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Kyriakakis, Emmanouil, Medde, Chiara, Ritz, Danilo, Fucile, Geoffrey, Schmidt, Alexander, & . (2025). Bacterial RNA promotes proteostasis through inter-tissue communication in C. elegans. Nature Communications, 16. https://doi.org/10.1038/s41467-025-63987-x
Kyriakakis, Emmanouil, Medde, Chiara, Ritz, Danilo, Fucile, Geoffrey, Schmidt, Alexander, & . (2025). Bacterial RNA promotes proteostasis through inter-tissue communication in C. elegans. Nature Communications, 16. https://doi.org/10.1038/s41467-025-63987-x
Anna Leder, Guillaume Mas, Viktória Szentgyörgyi, Roman P. Jakob, Timm Maier, , & Sebastian Hiller. (2025). A multichaperone condensate enhances protein folding in the endoplasmic reticulum. Nature Cell Biology , 27(September), 1422–1430. https://doi.org/10.1038/s41556-025-01730-w
Anna Leder, Guillaume Mas, Viktória Szentgyörgyi, Roman P. Jakob, Timm Maier, , & Sebastian Hiller. (2025). A multichaperone condensate enhances protein folding in the endoplasmic reticulum. Nature Cell Biology , 27(September), 1422–1430. https://doi.org/10.1038/s41556-025-01730-w
Petrovic, Ivana, Desai, Samit, Isaikina, Polina, Abiko, Layara Akemi, , & Grzesiek, Stephan. (2025). A high-resolution analysis of arrestin2 interactions responsible for CCR5 endocytosis [Posted-content]. In eLife. eLife Sciences Publications, Ltd. https://doi.org/10.7554/elife.106839.1
Petrovic, Ivana, Desai, Samit, Isaikina, Polina, Abiko, Layara Akemi, , & Grzesiek, Stephan. (2025). A high-resolution analysis of arrestin2 interactions responsible for CCR5 endocytosis [Posted-content]. In eLife. eLife Sciences Publications, Ltd. https://doi.org/10.7554/elife.106839.1
Petrovic, Ivana, Tatli, Meltem, Desai, Samit, Grahl, Anne, Ni, Dongchun, Stahlberg, Henning, , Grzesiek, Stephan, & Abiko, Layara Akemi. (2025). Arrestin recognizes GPCRs independently of the receptor state [Journal-article]. Proceedings of the National Academy of Sciences, 122(20). https://doi.org/10.1073/pnas.2501487122
Petrovic, Ivana, Tatli, Meltem, Desai, Samit, Grahl, Anne, Ni, Dongchun, Stahlberg, Henning, , Grzesiek, Stephan, & Abiko, Layara Akemi. (2025). Arrestin recognizes GPCRs independently of the receptor state [Journal-article]. Proceedings of the National Academy of Sciences, 122(20). https://doi.org/10.1073/pnas.2501487122
Solinger, Jachen A., Ott, Daniel P., & . (2025). ESCRTing the RABs through conversion [Journal-article]. Biochemical Society Transactions, 53(02), 431–445. https://doi.org/10.1042/bst20253007
Solinger, Jachen A., Ott, Daniel P., & . (2025). ESCRTing the RABs through conversion [Journal-article]. Biochemical Society Transactions, 53(02), 431–445. https://doi.org/10.1042/bst20253007
Pal, Jagriti, Riester, Marisa, Ganner, Athina, Ghosh, Avantika, Dhamija, Sonam, Mookherjee, Debdatto, Voss, Christian, Frew, Ian J., Kotsis, Fruzsina, Neumann-Haefelin, Elke, , & Diederichs, Sven. (2025). Nonstop mutations cause loss of renal tumor suppressor proteins VHL and BAP1 and affect multiple stages of protein translation [Journal-article]. Science Advances, 11(7). https://doi.org/10.1126/sciadv.adr6375
Pal, Jagriti, Riester, Marisa, Ganner, Athina, Ghosh, Avantika, Dhamija, Sonam, Mookherjee, Debdatto, Voss, Christian, Frew, Ian J., Kotsis, Fruzsina, Neumann-Haefelin, Elke, , & Diederichs, Sven. (2025). Nonstop mutations cause loss of renal tumor suppressor proteins VHL and BAP1 and affect multiple stages of protein translation [Journal-article]. Science Advances, 11(7). https://doi.org/10.1126/sciadv.adr6375
Ott, Daniel P, Desai, Samit, Solinger, Jachen A, Kaech, Andres, & . (2025). Coordination between ESCRT function and Rab conversion during endosome maturation [Journal-article]. The EMBO Journal, Online ahead of print. https://doi.org/10.1038/s44318-025-00367-7
Ott, Daniel P, Desai, Samit, Solinger, Jachen A, Kaech, Andres, & . (2025). Coordination between ESCRT function and Rab conversion during endosome maturation [Journal-article]. The EMBO Journal, Online ahead of print. https://doi.org/10.1038/s44318-025-00367-7
Malong, Liza, Roskosch, Jessica, Hager, Carolina, Fortin, Jean-Philippe, Schmucki, Roland, Callow, Marinella G., Weile, Christian, Romeo, Valentina, Patsch, Christoph, Martin, Scott, Costa, Mike, Modrusan, Zora, Villaseñor, Roberto, Koller, Erich, Haley, Benjamin, , & Roudnicky, Filip. (2024). A CRISPR/Cas9 screen reveals proteins at the endosome-Golgi interface that modulate cellular ASO activity [Posted-content]. In bioRxiv. Cold Spring Harbor Laboratory. https://doi.org/10.1101/2024.12.17.628665
Malong, Liza, Roskosch, Jessica, Hager, Carolina, Fortin, Jean-Philippe, Schmucki, Roland, Callow, Marinella G., Weile, Christian, Romeo, Valentina, Patsch, Christoph, Martin, Scott, Costa, Mike, Modrusan, Zora, Villaseñor, Roberto, Koller, Erich, Haley, Benjamin, , & Roudnicky, Filip. (2024). A CRISPR/Cas9 screen reveals proteins at the endosome-Golgi interface that modulate cellular ASO activity [Posted-content]. In bioRxiv. Cold Spring Harbor Laboratory. https://doi.org/10.1101/2024.12.17.628665
Petrovic, Ivana, Samit, Desai, Isaikina, Polina, Abiko, Layara Akemi, , & Grzesiek, Stephan. (2024). A high-resolution analysis of arrestin2 interactions responsible for CCR5 endocytosis. In bioRxiv. Cold Spring Harbor Laboratory. https://doi.org/10.1101/2024.11.04.621860
Petrovic, Ivana, Samit, Desai, Isaikina, Polina, Abiko, Layara Akemi, , & Grzesiek, Stephan. (2024). A high-resolution analysis of arrestin2 interactions responsible for CCR5 endocytosis. In bioRxiv. Cold Spring Harbor Laboratory. https://doi.org/10.1101/2024.11.04.621860
Szentgyörgyi, Viktória, Lueck, Leon, Overwijn, Daan, Ritz, Danilo, Zoeller, Nadja, Schmidt, Alexander, Hondele, Maria, , & Bakhtiar, Shahrzad. (2024). Arf1-dependent LRBA recruitment to Rab4 endosomes is required for endolysosome homeostasis. Journal of Cell Biology, 223(11). https://doi.org/10.1083/jcb.202401167
Szentgyörgyi, Viktória, Lueck, Leon, Overwijn, Daan, Ritz, Danilo, Zoeller, Nadja, Schmidt, Alexander, Hondele, Maria, , & Bakhtiar, Shahrzad. (2024). Arf1-dependent LRBA recruitment to Rab4 endosomes is required for endolysosome homeostasis. Journal of Cell Biology, 223(11). https://doi.org/10.1083/jcb.202401167
Banerjee, Arka, Ataman, Meric, Smialek, Maciej Jerzy, Mookherjee, Debdatto, Rabl, Julius, Mironov, Aleksei, Mues, Lea, Enkler, Ludovic, Coto-Llerena, Mairene, Schmidt, Alexander, Boehringer, Daniel, Piscuoglio, Salvatore, , Mittal, Nitish, & Zavolan, Mihaela. (2024). Ribosomal protein RPL39L is an efficiency factor in the cotranslational folding of a subset of proteins with alpha helical domains [Journal-article]. Nucleic Acids Research, 52(15), 9028–9048. https://doi.org/10.1093/nar/gkae630
Banerjee, Arka, Ataman, Meric, Smialek, Maciej Jerzy, Mookherjee, Debdatto, Rabl, Julius, Mironov, Aleksei, Mues, Lea, Enkler, Ludovic, Coto-Llerena, Mairene, Schmidt, Alexander, Boehringer, Daniel, Piscuoglio, Salvatore, , Mittal, Nitish, & Zavolan, Mihaela. (2024). Ribosomal protein RPL39L is an efficiency factor in the cotranslational folding of a subset of proteins with alpha helical domains [Journal-article]. Nucleic Acids Research, 52(15), 9028–9048. https://doi.org/10.1093/nar/gkae630
Hiller, Sebastian, Szentgyörgyi, Viktória, Jakob, Roman, Maier, Timm, & . (2024). A functional chaperone condensate in the endoplasmic reticulum. In Research Square. Research Square. https://doi.org/10.21203/rs.3.rs-4796355/v1
Hiller, Sebastian, Szentgyörgyi, Viktória, Jakob, Roman, Maier, Timm, & . (2024). A functional chaperone condensate in the endoplasmic reticulum. In Research Square. Research Square. https://doi.org/10.21203/rs.3.rs-4796355/v1
Abiko, Layara Akemi, Petrovic, Ivana, Tatli, Meltem, Desai, Samit, Stahlberg, Henning, , & Grzesiek, Stephan. (2024). Biased agonism of carvedilol in the beta1-adrenergic receptor is governed by conformational exclusion [Posted-content]. In bioRxiv. Cold Spring Harbor Laboratory. https://doi.org/10.1101/2024.07.19.604263
Abiko, Layara Akemi, Petrovic, Ivana, Tatli, Meltem, Desai, Samit, Stahlberg, Henning, , & Grzesiek, Stephan. (2024). Biased agonism of carvedilol in the beta1-adrenergic receptor is governed by conformational exclusion [Posted-content]. In bioRxiv. Cold Spring Harbor Laboratory. https://doi.org/10.1101/2024.07.19.604263
Ott, Daniel P., Desai, Samit, Solinger, Jachen A., Kaech, Andres, & . (2024). Coordination between ESCRT function and Rab conversion during endosome maturation [Posted-content]. In bioRxiv. Cold Spring Harbor Laboratory. https://doi.org/10.1101/2024.05.14.594104
Ott, Daniel P., Desai, Samit, Solinger, Jachen A., Kaech, Andres, & . (2024). Coordination between ESCRT function and Rab conversion during endosome maturation [Posted-content]. In bioRxiv. Cold Spring Harbor Laboratory. https://doi.org/10.1101/2024.05.14.594104
Enkler, Ludovic, & . (2024). Functional interplay of lipid droplets and mitochondria. FEBS Letters, 598(10), 1235–1251. https://doi.org/10.1002/1873-3468.14809
Enkler, Ludovic, & . (2024). Functional interplay of lipid droplets and mitochondria. FEBS Letters, 598(10), 1235–1251. https://doi.org/10.1002/1873-3468.14809
Koch, Christian, Lenhard, Svenja, Räschle, Markus, Prescianotto-Baschong, Cristina, , & Herrmann, Johannes M. (2024). The ER-SURF pathway uses ER-mitochondria contact sites for protein targeting to mitochondria. EMBO Reports, 25(4), 2071–2096. https://doi.org/10.1038/s44319-024-00113-w
Koch, Christian, Lenhard, Svenja, Räschle, Markus, Prescianotto-Baschong, Cristina, , & Herrmann, Johannes M. (2024). The ER-SURF pathway uses ER-mitochondria contact sites for protein targeting to mitochondria. EMBO Reports, 25(4), 2071–2096. https://doi.org/10.1038/s44319-024-00113-w
, & Spang, Anne. (2024). La petite GTPase ARF1 coordonne le métabolisme des acides gras et l’homéostasie mitochondriale [Journal-article]. Médecine/Sciences, 40(4), 321–323. https://doi.org/10.1051/medsci/2024030
, & Spang, Anne. (2024). La petite GTPase ARF1 coordonne le métabolisme des acides gras et l’homéostasie mitochondriale [Journal-article]. Médecine/Sciences, 40(4), 321–323. https://doi.org/10.1051/medsci/2024030
Franziscus, Curdin A., Ritz, Danilo, Kappel, N. Constantin, Solinger, Jachen A., Schmidt, Alexander, & . (2024). The protein tyrosine phosphatase PPH-7 is required for fertility and embryonic development in C. elegans at elevated temperatures. FEBS Open Bio, 14(3), 390–409. https://doi.org/10.1002/2211-5463.13771
Franziscus, Curdin A., Ritz, Danilo, Kappel, N. Constantin, Solinger, Jachen A., Schmidt, Alexander, & . (2024). The protein tyrosine phosphatase PPH-7 is required for fertility and embryonic development in C. elegans at elevated temperatures. FEBS Open Bio, 14(3), 390–409. https://doi.org/10.1002/2211-5463.13771
Szentgyörgyi, Viktória, Lueck, Leon Maximilian, Overwijn, Daan, Zoeller, Nadia, Hondele, Maria, , & Bakhtiar, Shahrzad. (2024). Endosomal LRBA regulates the endo-lysosomal pathway [Posted-content]. In bioRxiv. Cold Spring Harbor Laboratory. https://doi.org/10.1101/2024.02.07.579084
Szentgyörgyi, Viktória, Lueck, Leon Maximilian, Overwijn, Daan, Zoeller, Nadia, Hondele, Maria, , & Bakhtiar, Shahrzad. (2024). Endosomal LRBA regulates the endo-lysosomal pathway [Posted-content]. In bioRxiv. Cold Spring Harbor Laboratory. https://doi.org/10.1101/2024.02.07.579084
Kyriakakis, Emmanouil, Medde, Chiara, Ritz, Danilo, Fucile, Geoffrey, Schmidt, Alexander, & . (2024). Bacterial RNA promotes proteostasis through inter-tissue communication in C. elegans. In bioRxiv (Cold Spring Harbor Laboratory). Cold Spring Harbor Laboratory. https://doi.org/10.1101/2024.03.13.584467
Kyriakakis, Emmanouil, Medde, Chiara, Ritz, Danilo, Fucile, Geoffrey, Schmidt, Alexander, & . (2024). Bacterial RNA promotes proteostasis through inter-tissue communication in C. elegans. In bioRxiv (Cold Spring Harbor Laboratory). Cold Spring Harbor Laboratory. https://doi.org/10.1101/2024.03.13.584467
Koch, Christian, Räschle, Markus, Prescianotto-Baschong, Cristina, , & Herrmann, Johannes M. (2023). The ER-SURF pathway uses ER-mitochondria contact sites for protein targeting to mitochondria [Posted-content]. bioRxiv. https://doi.org/10.1101/2023.08.10.552816
Koch, Christian, Räschle, Markus, Prescianotto-Baschong, Cristina, , & Herrmann, Johannes M. (2023). The ER-SURF pathway uses ER-mitochondria contact sites for protein targeting to mitochondria [Posted-content]. bioRxiv. https://doi.org/10.1101/2023.08.10.552816
Buser, Dominik P., & . (2023). Protein sorting from endosomes to the TGN. Frontiers in Cell and Developmental Biology, 11, 1140605. https://doi.org/10.3389/fcell.2023.1140605
Buser, Dominik P., & . (2023). Protein sorting from endosomes to the TGN. Frontiers in Cell and Developmental Biology, 11, 1140605. https://doi.org/10.3389/fcell.2023.1140605
Enkler, Ludovic, Szentgyörgyi, Viktoria, Pennauer, Mirjam, Prescianotto-Baschong, Cristina, Riezman, Isabelle, Wiesyk, Aneta, Avraham, Reut Ester, Spiess, Martin, Zalckvar, Einat, Kucharczyk, Roza, Riezman, Howard, & . (2023). Arf1 coordinates fatty acid metabolism and mitochondrial homeostasis. Nature Cell Biology, 25(8), 1157–1172. https://doi.org/10.1038/s41556-023-01180-2
Enkler, Ludovic, Szentgyörgyi, Viktoria, Pennauer, Mirjam, Prescianotto-Baschong, Cristina, Riezman, Isabelle, Wiesyk, Aneta, Avraham, Reut Ester, Spiess, Martin, Zalckvar, Einat, Kucharczyk, Roza, Riezman, Howard, & . (2023). Arf1 coordinates fatty acid metabolism and mitochondrial homeostasis. Nature Cell Biology, 25(8), 1157–1172. https://doi.org/10.1038/s41556-023-01180-2
Heutschi, Daniel, Schmelzer, Etienne, Aydogan, Vahap, Schmidt, Alexander, Belting, Heinz-Georg, , Affolter, Markus, & Kotini, Maria P. (2023). Genetic analysis of rab7 mutants in zebrafish. bioRxiv. https://doi.org/10.1101/2023.03.09.531857
Heutschi, Daniel, Schmelzer, Etienne, Aydogan, Vahap, Schmidt, Alexander, Belting, Heinz-Georg, , Affolter, Markus, & Kotini, Maria P. (2023). Genetic analysis of rab7 mutants in zebrafish. bioRxiv. https://doi.org/10.1101/2023.03.09.531857
Szentgyörgyi, Viktória, & . (2023). Membrane tethers at a glance. Journal of Cell Science, 136(6), jcs260471. https://doi.org/10.1242/jcs.260471
Szentgyörgyi, Viktória, & . (2023). Membrane tethers at a glance. Journal of Cell Science, 136(6), jcs260471. https://doi.org/10.1242/jcs.260471
Solinger, Jachen A., Rashid, Harun-Or, & . (2022). FERARI and cargo adaptors coordinate cargo flow through sorting endosomes. Nature Communications, 13(1), 4620. https://doi.org/10.1038/s41467-022-32377-y
Solinger, Jachen A., Rashid, Harun-Or, & . (2022). FERARI and cargo adaptors coordinate cargo flow through sorting endosomes. Nature Communications, 13(1), 4620. https://doi.org/10.1038/s41467-022-32377-y
Solinger, J. A., & (2022). Sorting of cargo in the tubular endosomal network. Bioessays, 44(12), e2200158. https://doi.org/10.1002/bies.202200158
Solinger, J. A., & (2022). Sorting of cargo in the tubular endosomal network. Bioessays, 44(12), e2200158. https://doi.org/10.1002/bies.202200158
Matos, A. L. L., Keller, F., Wegner, T., Del Castillo, C. E. C., Grill, D., Kudruk, S., Spang, A., Glorius, F., Heuer, A., & Gerke, V. (2021). Erratum: Author Correction: CHIMs are versatile cholesterol analogs mimicking and visualizing cholesterol behavior in lipid bilayers and cells (Communications biology (2021) 4 1 (720)). Communications Biology, 4(1). https://doi.org/10.1038/s42003-021-02570-8
Matos, A. L. L., Keller, F., Wegner, T., Del Castillo, C. E. C., Grill, D., Kudruk, S., Spang, A., Glorius, F., Heuer, A., & Gerke, V. (2021). Erratum: Author Correction: CHIMs are versatile cholesterol analogs mimicking and visualizing cholesterol behavior in lipid bilayers and cells (Communications biology (2021) 4 1 (720)). Communications Biology, 4(1). https://doi.org/10.1038/s42003-021-02570-8
Bottanelli, Francesca, , Stefan, Chris, & Ungermann, Christian. (2021). Meeting report - An online gathering about the latest on Molecular Membrane Biology. Journal of Biological Chemistry, 101237. https://doi.org/10.1016/j.jbc.2021.101237
Bottanelli, Francesca, , Stefan, Chris, & Ungermann, Christian. (2021). Meeting report - An online gathering about the latest on Molecular Membrane Biology. Journal of Biological Chemistry, 101237. https://doi.org/10.1016/j.jbc.2021.101237
Cadena Del Castillo, Carla E., Hannich, J. Thomas, Kaech, Andres, Chiyoda, Hirohisa, Brewer, Jonathan, Fukuyama, Masamitsu, Færgeman, Nils J., Riezman, Howard, & . (2021). Patched regulates lipid. Nature Communications, 12(1), 4898. https://doi.org/10.1038/s41467-021-24995-9
Cadena Del Castillo, Carla E., Hannich, J. Thomas, Kaech, Andres, Chiyoda, Hirohisa, Brewer, Jonathan, Fukuyama, Masamitsu, Færgeman, Nils J., Riezman, Howard, & . (2021). Patched regulates lipid. Nature Communications, 12(1), 4898. https://doi.org/10.1038/s41467-021-24995-9
Chiyoda, Hirohisa, Kume, Masahiko, Del Castillo, Carla Cadena, Kontani, Kenji, , Katada, Toshiaki, & Fukuyama, Masamitsu. (2021). Caenorhabditis elegans PTR/PTCHD PTR-18 promotes the clearance of extracellular hedgehog-related protein via endocytosis. PLoS Genetics, 17(4), e1009457. https://doi.org/10.1371/journal.pgen.1009457
Chiyoda, Hirohisa, Kume, Masahiko, Del Castillo, Carla Cadena, Kontani, Kenji, , Katada, Toshiaki, & Fukuyama, Masamitsu. (2021). Caenorhabditis elegans PTR/PTCHD PTR-18 promotes the clearance of extracellular hedgehog-related protein via endocytosis. PLoS Genetics, 17(4), e1009457. https://doi.org/10.1371/journal.pgen.1009457
Cohen, Jennifer D., Cadena Del Castillo, Carla E., Serra, Nicholas D., Kaech, Andres, , & Sundaram, Meera V. (2021). The Caenorhabditis elegans Patched domain protein PTR-4 is required for proper organization of the precuticular apical extracellular matrix. Genetics, 219(3), 1–14. https://doi.org/10.1093/genetics/iyab132
Cohen, Jennifer D., Cadena Del Castillo, Carla E., Serra, Nicholas D., Kaech, Andres, , & Sundaram, Meera V. (2021). The Caenorhabditis elegans Patched domain protein PTR-4 is required for proper organization of the precuticular apical extracellular matrix. Genetics, 219(3), 1–14. https://doi.org/10.1093/genetics/iyab132
Kochan, David Z., Mawer, Julia S. P., Massen, Jennifer, Tishinov, Kiril, Parekh, Swati, Graef, Martin, , & Tessarz, Peter. (2021). The RNA-binding protein Puf5 contributes to buffering of mRNA upon chromatin-mediated changes in nascent transcription. Journal of Cell Science, 134(15). https://doi.org/10.1242/jcs.259051
Kochan, David Z., Mawer, Julia S. P., Massen, Jennifer, Tishinov, Kiril, Parekh, Swati, Graef, Martin, , & Tessarz, Peter. (2021). The RNA-binding protein Puf5 contributes to buffering of mRNA upon chromatin-mediated changes in nascent transcription. Journal of Cell Science, 134(15). https://doi.org/10.1242/jcs.259051
Laborenz, Janina, Bykov, Yury S., Knöringer, Katharina, Räschle, Markus, Filker, Sabine, Prescianotto-Baschong, Cristina, , Tatsuta, Takashi, Langer, Thomas, Storchová, Zuzana, Schuldiner, Maya, & Herrmann, Johannes M. (2021). The ER protein Ema19 facilitates the degradation of non-imported mitochondrial precursor proteins. Molecular Biology of the Cell, 32(8), 664–674. https://doi.org/10.1091/mbc.e20-11-0748
Laborenz, Janina, Bykov, Yury S., Knöringer, Katharina, Räschle, Markus, Filker, Sabine, Prescianotto-Baschong, Cristina, , Tatsuta, Takashi, Langer, Thomas, Storchová, Zuzana, Schuldiner, Maya, & Herrmann, Johannes M. (2021). The ER protein Ema19 facilitates the degradation of non-imported mitochondrial precursor proteins. Molecular Biology of the Cell, 32(8), 664–674. https://doi.org/10.1091/mbc.e20-11-0748
Matos, Anna L. L., Keller, Fabian, Wegner, Tristan, Del Castillo, Carla Elizabeth Cadena, Grill, David, Kudruk, Sergej, , Glorius, Frank, Heuer, Andreas, & Gerke, Volker. (2021). CHIMs are versatile cholesterol analogs mimicking and visualizing cholesterol behavior in lipid bilayers and cells. Communications Biology, 4(1), 720. https://doi.org/10.1038/s42003-021-02252-5
Matos, Anna L. L., Keller, Fabian, Wegner, Tristan, Del Castillo, Carla Elizabeth Cadena, Grill, David, Kudruk, Sergej, , Glorius, Frank, Heuer, Andreas, & Gerke, Volker. (2021). CHIMs are versatile cholesterol analogs mimicking and visualizing cholesterol behavior in lipid bilayers and cells. Communications Biology, 4(1), 720. https://doi.org/10.1038/s42003-021-02252-5
Podinovskaia, Maria, Prescianotto-Baschong, Cristina, Buser, Dominik P., & . (2021). A novel live-cell imaging assay reveals regulation of endosome maturation. eLife, 10, 1–32. https://doi.org/10.7554/elife.70982
Podinovskaia, Maria, Prescianotto-Baschong, Cristina, Buser, Dominik P., & . (2021). A novel live-cell imaging assay reveals regulation of endosome maturation. eLife, 10, 1–32. https://doi.org/10.7554/elife.70982
. (2021). Means of intracellular communication: touching, kissing, fusing. Microbial Cell, 8(5), 87–90. https://doi.org/10.15698/mic2021.05.747
. (2021). Means of intracellular communication: touching, kissing, fusing. Microbial Cell, 8(5), 87–90. https://doi.org/10.15698/mic2021.05.747
Tishinov, Kiril, & . (2021). The mRNA decapping complex is buffered by nuclear localization. Journal of Cell Science, 134(18), 1–15. https://doi.org/10.1242/jcs.259156
Tishinov, Kiril, & . (2021). The mRNA decapping complex is buffered by nuclear localization. Journal of Cell Science, 134(18), 1–15. https://doi.org/10.1242/jcs.259156
Kochan, David Z., Mawer, Julia S. P., Tishinov, Kiril, Parekh, Swati, Massen, Jennifer, Graef, Martin, , & Tessarz, Peter. (2020). The RNA-binding protein Puf5 buffers mRNA levels against chromatin-mediated changes in nascent transcription [Posted-content]. bioRxiv. https://doi.org/10.1101/2020.08.13.249912
Kochan, David Z., Mawer, Julia S. P., Tishinov, Kiril, Parekh, Swati, Massen, Jennifer, Graef, Martin, , & Tessarz, Peter. (2020). The RNA-binding protein Puf5 buffers mRNA levels against chromatin-mediated changes in nascent transcription [Posted-content]. bioRxiv. https://doi.org/10.1101/2020.08.13.249912
Solinger, Jachen A., Rashid, Harun-Or, Prescianotto-Baschong, Cristina, & . (2020). FERARI is required for Rab11-dependent endocytic recycling. Nature Cell Biology, 22(2), 213–224. https://doi.org/10.1038/s41556-019-0456-5
Solinger, Jachen A., Rashid, Harun-Or, Prescianotto-Baschong, Cristina, & . (2020). FERARI is required for Rab11-dependent endocytic recycling. Nature Cell Biology, 22(2), 213–224. https://doi.org/10.1038/s41556-019-0456-5
Tishinov, Kiril, & . (2020). Decapping complex is essential for functional P-body formation and is buffered by nuclear localization. bioRxiv. https://doi.org/10.1101/2020.09.07.285700
Tishinov, Kiril, & . (2020). Decapping complex is essential for functional P-body formation and is buffered by nuclear localization. bioRxiv. https://doi.org/10.1101/2020.09.07.285700
Wu, Yu, Boulogne, Claire, Carle, Stefan, Podinovskaia, Maria, Barth, Holger, , Cintrat, Jean-Christophe, Gillet, Daniel, & Barbier, Julien. (2020). Regulation of endo-lysosomal pathway and autophagic flux by broad-spectrum anti-pathogen inhibitor ABMA. The FEBS journal, 287(15), 3184–3199. https://doi.org/10.1111/febs.15201
Wu, Yu, Boulogne, Claire, Carle, Stefan, Podinovskaia, Maria, Barth, Holger, , Cintrat, Jean-Christophe, Gillet, Daniel, & Barbier, Julien. (2020). Regulation of endo-lysosomal pathway and autophagic flux by broad-spectrum anti-pathogen inhibitor ABMA. The FEBS journal, 287(15), 3184–3199. https://doi.org/10.1111/febs.15201
Manchalu, Srinivas, Mittal, Nitish, , & Jansen, Ralf-Peter. (2019). Local translation of yeast<i>ERG4</i>mRNA at the endoplasmic reticulum requires the brefeldin A resistance protein Bfr1 [Posted-content]. bioRxiv. https://doi.org/10.1101/656405
Manchalu, Srinivas, Mittal, Nitish, , & Jansen, Ralf-Peter. (2019). Local translation of yeast<i>ERG4</i>mRNA at the endoplasmic reticulum requires the brefeldin A resistance protein Bfr1 [Posted-content]. bioRxiv. https://doi.org/10.1101/656405
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