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Andreas Mayer

Coordonnées Recherches Enseignements Publications  
Publications | Mémoires et thèses

La recherche avancée est accessible via Serval

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D'Agostino M., Risselada H.J., Mayer A., Steric hindrance of SNARE transmembrane domain organization impairs the hemifusion-to-fusion transition. Embo Reports, In Press. [DOI] [Pubmed] ok



Desfougères Y., Neumann H., Mayer A., Organelle size control - increasing vacuole content activates SNAREs to augment organelle volume through homotypic fusion. Journal of Cell Science 129(14), pp. 2817-2828, 2016. [DOI] [Web of Science] [Pubmed]

Desfougères Y., Vavassori S., Rompf M., Gerasimaite R., Mayer A., Organelle acidification negatively regulates vacuole membrane fusion in vivo. Scientific Reports 6, p. 29045, 2016. [DOI] [Web of Science] [Pubmed] ok

Gerasimaitė R., Mayer A., Enzymes of yeast polyphosphate metabolism: structure, enzymology and biological roles. Biochemical Society Transactions 44(1), pp. 234-239, 2016. [DOI] [Web of Science] [Pubmed]

Wild R., Gerasimaite R., Jung J.Y., Truffault V., Pavlovic I., Schmidt A., Saiardi A., Jessen H.J., Poirier Y., Hothorn M. et al., Control of eukaryotic phosphate homeostasis by inositol polyphosphate sensor domains. Science 352(6288), pp. 986-990, 2016. [DOI] [Web of Science] [Pubmed] ok


Desfougères Y., D'Agostino M., Mayer A., A modular tethering complex for endosomal recycling. Nature Cell Biology 17(5), pp. 540-541, 2015. [DOI] [Web of Science] [Pubmed]

Pieren M., Desfougères Y., Michaillat L., Schmidt A., Mayer A., Vacuolar SNARE Protein Transmembrane Domains Serve as Nonspecific Membrane Anchors with Unequal Roles in Lipid Mixing. Journal of Biological Chemistry 290(20), pp. 12821-12832, 2015. [DOI] [Web of Science] [Pubmed] ok


Gerasimaitė R., Sharma S., Desfougères Y., Schmidt A., Mayer A., Coupled synthesis and translocation restrains polyphosphate to acidocalcisome-like vacuoles and prevents its toxicity. Journal of Cell Science 127(23), pp. 5093-5104, 2014. [DOI] [Web of Science] [Pubmed]

Vavassori S., Mayer A., A new life for an old pump: V-ATPase and neurotransmitter release. Journal of Cell Biology 205(1), pp. 7-9, 2014. [Document] [DOI] [Web of Science] [Pubmed]


Alpadi K., Kulkarni A., Namjoshi S., Srinivasan S., Sippel K.H., Ayscough K., Zieger M., Schmidt A., Mayer A., Evangelista M. et al., Dynamin-SNARE interactions control trans-SNARE formation in intracellular membrane fusion. Nature Communications 4, p. 1704, 2013. [DOI] [Web of Science] [Pubmed]

Gopaldass N., Rompf M., Mayer A., On the Rab again-the PATh to mTORC1 activation. EMBO Reports 14(5), pp. 398-399, 2013. [DOI] [Web of Science] [Pubmed]

Michaillat L., Mayer A., Identification of Genes Affecting Vacuole Membrane Fragmentation in Saccharomyces cerevisiae. PLoS One 8(2), p. e54160, 2013. [Document] [DOI] [Web of Science] [Pubmed]


Klionsky D.J., Abdalla F.C., Abeliovich H., Abraham R.T., Acevedo-Arozena A., Adeli K., Agholme L., Agnello M., Agostinis P., Aguirre-Ghiso J.A. et al., Guidelines for the use and interpretation of assays for monitoring autophagy. Autophagy 8(4), pp. 445-544, 2012. [DOI] [Web of Science] [Pubmed] ok

Alpadi K., Kulkarni A., Comte V., Reinhardt M., Schmidt A., Namjoshi S., Mayer A., Peters C., Sequential analysis of trans-SNARE formation in intracellular membrane fusion. PLoS Biology 10(1), p. e1001243, 2012. [Document] [DOI] [Web of Science] [Pubmed]

Michaillat L., Baars T.L., Mayer A., Cell-free reconstitution of vacuole membrane fragmentation reveals regulation of vacuole size and number by TORC1. Molecular Biology of the Cell 23(5), pp. 881-895, 2012. [Document] [DOI] [Web of Science] [Pubmed]

Zieger M., Mayer A., Yeast vacuoles fragment in an asymmetrical two-phase process with distinct protein requirements. Molecular Biology of the Cell 23(17), pp. 3438-3449, 2012. [Document] [DOI] [Web of Science] [Pubmed] ok


Strasser B., Iwaszkiewicz J., Michielin O., Mayer A., The V-ATPase proteolipid cylinder promotes the lipid-mixing stage of SNARE-dependent fusion of yeast vacuoles. EMBO Journal 30(20), pp. 4126-4141, 2011. [DOI] [Web of Science] [Pubmed]


Dawaliby R., Mayer A., Microautophagy of the nucleus coincides with a vacuolar diffusion barrier at nuclear-vacuolar junctions. Molecular Biology of the Cell 21(23), pp. 4173-4183, 2010. [Document] [DOI] [Web of Science] [Pubmed]

Pieren M., Schmidt A., Mayer A., The SM protein Vps33 and the t-SNARE H(abc) domain promote fusion pore opening. Nature Structural and Molecular Biology 17(6), pp. 710-717, 2010. [DOI] [Web of Science] [Pubmed]


Hothorn M., Neumann H., Lenherr E.D., Wehner M., Rybin V., Hassa P.O., Uttenweiler A., Reinhardt M., Schmidt A., Seiler J. et al., Catalytic core of a membrane-associated eukaryotic polyphosphate polymerase. Science 324(5926), pp. 513-516, 2009. [DOI] [Web of Science] [Pubmed] ok


Apel A., Herr I., Schwarz H., Rodemann H.P., Mayer A., Blocked autophagy sensitizes resistant carcinoma cells to radiation therapy. Cancer Research 68(5), pp. 1485-1494, 2008. [DOI] [Web of Science] [Pubmed]

Mayer A., Cell-free reconstitution of microautophagy in yeast. Methods in Enzymology 451, pp. 151-162, 2008. [DOI] [Web of Science] [Pubmed]

Uttenweiler A., Mayer A., Microautophagy in the yeast Saccharomyces cerevisiae. Methods in Molecular Biology 445, pp. 245-259, 2008. [DOI] [Pubmed]


Baars T.L., Petri S., Peters C., Mayer A., Role of the V-ATPase in regulation of the vacuolar fission-fusion equilibrium. Molecular Biology of the Cell 18(10), pp. 3873-3882, 2007. [DOI] [Web of Science] [Pubmed] ok

Uttenweiler A., Schwarz H., Neumann H., Mayer A., The vacuolar transporter chaperone (VTC) complex is required for microautophagy. Molecular Biology of the Cell 18(1), pp. 166-175, 2007. [DOI] [Web of Science] [Pubmed] ok


Reese C., Heise F., Mayer A., Trans-SNARE pairing can precede a hemifusion intermediate in intracellular membrane fusion. Nature 436(7049), pp. 410-414, 2005. [DOI] [Web of Science] [Pubmed]

Reese C., Mayer A., Transition from hemifusion to pore opening is rate limiting for vacuole membrane fusion. Journal of Cell Biology 171(6), pp. 981-990, 2005. [Document] [DOI] [Web of Science] [Pubmed] ok

Uttenweiler A., Schwarz H., Mayer A., Microautophagic vacuole invagination requires calmodulin in a Ca2+-independent function. Journal of Biological Chemistry 280(39), pp. 33289-33297, 2005. [DOI] [Web of Science] [Pubmed] ok


Kunz J.B., Schwarz H., Mayer A., Determination of four sequential stages during microautophagy in vitro. Journal of Biological Chemistry 279(11), pp. 9987-9996, 2004. [DOI] [Web of Science] [Pubmed] ok

Peters C., Baars T.L., Bühler S., Mayer A., Mutual control of membrane fission and fusion proteins. Cell 119(5), pp. 667-678, 2004. [DOI] [Web of Science] [Pubmed]


Bayer M.J., Reese C., Buhler S., Peters C., Mayer A., Vacuole membrane fusion: V0 functions after trans-SNARE pairing and is coupled to the Ca2+-releasing channel. Journal of Cell Biology 162(2), pp. 211-222, 2003. [DOI] [Web of Science] [Pubmed] ok


Mayer A., Membrane fusion in eukaryotic cells. Annual Review of Cell and Developmental Biology 18, pp. 289-314, 2002. [DOI] [Web of Science] [Pubmed] ok

Müller O., Bayer M.J., Peters C., Andersen J.S., Mann M., Mayer A., The Vtc proteins in vacuole fusion: coupling NSF activity to V(0) trans-complex formation. EMBO Journal 21(3), pp. 259-269, 2002. [DOI] [Web of Science] [Pubmed] ok


Mayer A., What drives membrane fusion in eukaryotes? Trends in Biochemical Sciences 26(12), pp. 717-723, 2001. [DOI] [Web of Science] [Pubmed] ok

Müller O., Johnson D.I., Mayer A., Cdc42p functions at the docking stage of yeast vacuole membrane fusion. EMBO Journal 20(20), pp. 5657-5665, 2001. [DOI] [Web of Science] [Pubmed] ok

Peters C., Bayer M.J., Bühler S., Andersen J.S., Mann M., Mayer A., Trans-complex formation by proteolipid channels in the terminal phase of membrane fusion. Nature 409(6820), pp. 581-588, 2001. [DOI] [Web of Science] [Pubmed]


Mayer A., Scheglmann D., Dove S., Glatz A., Wickner W., Haas A., Phosphatidylinositol 4,5-bisphosphate regulates two steps of homotypic vacuole fusion. Molecular Biology of the Cell 11(3), pp. 807-817, 2000. [Web of Science] [Pubmed] ok

Müller O., Sattler T., Flötenmeyer M., Schwarz H., Plattner H., Mayer A., Autophagic tubes: vacuolar invaginations involved in lateral membrane sorting and inverse vesicle budding. Journal of Cell Biology 151(3), pp. 519-528, 2000. [DOI] [Web of Science] [Pubmed] ok

Sattler T., Mayer A., Cell-free reconstitution of microautophagic vacuole invagination and vesicle formation. Journal of Cell Biology 151(3), pp. 529-538, 2000. [DOI] [Web of Science] [Pubmed] ok


Mayer A., Intracellular membrane fusion: SNAREs only? Current Opinion in Cell Biology 11(4), pp. 447-452, 1999. [DOI] [Web of Science] [Pubmed] ok

Peters C., Andrews P.D., Stark M.J., Cesaro-Tadic S., Glatz A., Podtelejnikov A., Mann M., Mayer A., Control of the terminal step of intracellular membrane fusion by protein phosphatase 1. Science 285(5430), pp. 1084-1087, 1999. [DOI] [Web of Science] [Pubmed] ok


Peters C., Mayer A., Ca2+/calmodulin signals the completion of docking and triggers a late step of vacuole fusion. Nature 396(6711), pp. 575-580, 1998. [DOI] [Web of Science] [Pubmed] ok

Rapaport D., Mayer A., Neupert W., Lill R., cis and trans sites of the TOM complex of mitochondria in unfolding and initial translocation of preproteins. Journal of Biological Chemistry 273(15), pp. 8806-8813, 1998. [DOI] [Web of Science] [Pubmed] ok


de Kroon A.I., Dolis D., Mayer A., Lill R., de Kruijff B., Phospholipid composition of highly purified mitochondrial outer membranes of rat liver and Neurospora crassa. Is cardiolipin present in the mitochondrial outer membrane? Biochimica et Biophysica Acta. Bioemembranes 1325(1), pp. 108-116, 1997. [DOI] [Web of Science] [Pubmed] ok

Mayer A., Wickner W., Docking of yeast vacuoles is catalyzed by the Ras-like GTPase Ypt7p after symmetric priming by Sec18p (NSF). Journal of Cell Biology 136(2), pp. 307-317, 1997. [DOI] [Web of Science] [Pubmed] ok

Xu Z., Mayer A., Muller E., Wickner W., A heterodimer of thioredoxin and I(B)2 cooperates with Sec18p (NSF) to promote yeast vacuole inheritance. Journal of Cell Biology 136(2), pp. 299-306, 1997. [DOI] [Web of Science] [Pubmed] ok


Mayer A., Wickner W., Haas A., Sec18p (NSF)-driven release of Sec17p (alpha-SNAP) can precede docking and fusion of yeast vacuoles. Cell 85(1), pp. 83-94, 1996. [DOI] [Web of Science] [Pubmed]


Mayer A., Driessen A., Neupert W., Lill R., Purified and protein-loaded mitochondrial outer membrane vesicles for functional analysis of preprotein transport. Methods in Enzymology 260, pp. 252-263, 1995. [Web of Science] [Pubmed] ok

Mayer A., Nargang F.E., Neupert W., Lill R., MOM22 is a receptor for mitochondrial targeting sequences and cooperates with MOM19. EMBO Journal 14(17), pp. 4204-4211, 1995. [Web of Science] [Pubmed] ok

Mayer A., Neupert W., Lill R., Translocation of apocytochrome c across the outer membrane of mitochondria. Journal of Biological Chemistry 270(21), pp. 12390-12397, 1995. [Web of Science] [Pubmed] ok

Nargang F.E., Künkele K.P., Mayer A., Ritzel R.G., Neupert W., Lill R., 'Sheltered disruption' of Neurospora crassa MOM22, an essential component of the mitochondrial protein import complex. EMBO Journal 14(6), pp. 1099-1108, 1995. [Web of Science] [Pubmed] ok


Mayer A., Lill R., Neupert W., Translocation and insertion of precursor proteins into isolated outer membranes of mitochondria. Journal of Cell Biology 121(6), pp. 1233-1243, 1993. [DOI] [Web of Science] [Pubmed] ok


Sporlein B., Mayer A., Dahlfeld G., Koop H.U., A microassay for quantitative determination of β-glucuronidase reporter gene activities in individually selected single higher plant cells. Plant Science 78(1), pp. 73-80, 1991. [DOI] [Web of Science] ok

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