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RESEARCH - D. Kümmel - General publication list

 
 

2018 - 2013

2018

 

  • Lürick A., Kümmel D., and Ungermann C. (2018)
    Multisubunit tethers in membrane fusion.
    Curr. Biol. 28, R417-R420.

  • Gao J., Langemeyer L., Kümmel D., Reggiori F., Ungermann C. (2018)
    Molecular mechanism to target the endosomal Mon1-Ccz1 GEF complex to the pre-autophagosomal structure.
    Elife e31145.

    Fernández M.L., Quartino P.Y., Arce-Bejarano R., Fernández J., Camacho L.F., Gutiérrez J.M., Kümmel D., Fidelio G., Lomonte B. (2018)
    Intravascular hemolysis induced by phospholipases A2 from the venom of the Eastern coral snake, Micrurus fulvius: functional profiles of hemolytic and non-hemolytic isoforms.
    Toxicol Lett. 286: 39-47

    Langemeyer L., Perz A., Kümmel D., Ungermann C. (2018)
    A Guanine nucleotide exchange factor (GEF) limits Rab GTPase driven membrane fusion.
    J. Biol. Chem. 293: 731-739.

2017

 

  • Hellinger R., Thell K., Vasileva M., Muhammad T., Gunasekera S., Kümmel D., Göransson U., Becker C.W., Gruber C.W. (2017)
    Chemical Proteomics for Target Discovery of Head-to-Tail Cyclized Mini-Proteins.
    Front Chem. 5, 73

  • Kiontke, S., Langemeyer, L., Kuhlee, A., Schuback, S., Raunser, S., Ungermann, C., Kümmel, D. (2017)
    Architecture and mechanism of the late endosomal Rab7-like Ypt7 guanine nucleotide exchange factor complex Mon1-Ccz1.
    Nat Commun, 8: 10.1038/ncomms14034.

2016

 

  • Zech, R., Kiontke, S., Mueller, U., Oeckinghaus, A., Kümmel, D. (2016)
    Structure of the Tuberous Sclerosis Complex 2 (TSC2) N-terminus Provides Insight into Complex Assembly and Tuberous Sclerosis Pathogenesis.
    J Biol Chem, 291: 20008-20020

2015

 

  • Krishnakumar S.S., Li F., Coleman J., Schauder C.M., Kümmel D., Pincet F., Rothman J.E., Reinisch K.M. (2015)
    Re-visiting the trans insertion model for complexin clamping.
    Elife, e04463

  • Lürick, A., Kuhlee, A., Bröcker, C., Kümmel, D., Raunser, S., Ungermann, C. (2015)
    The Habc Domain of the SNARE Vam3 Interacts with the HOPS Tethering Complex to Facilitate Vacuole Fusion.
    J Biol Chem, 290: 5405-5413.

2014

 

  • Behrmann, H., Lürick, A., Kuhlee, A., Balderhaar, H.K., Bröcker, C., Kümmel D, Engelbrecht-Vandre, S., Gohlke, U., Raunser, S., Heinemann, U., Ungermann, C. (2014)
    Structural identification of the Vps18 β-propeller reveals a critical role in the HOPS complex stability and function.
    J Biol Chem, 289: 33503-33512

  • Kümmel, D., Ungermann, C. (2014)
    Principles of membrane tethering and fusion in endosome and lysosome biogenesis.
    Curr Opin Cell Biol, 29C: 61-66

  • Cho, R.W., Kümmel, D., Li, F., Baguley, S.W., Coleman, J., Rothman, J.E., Littleton, J.T. (2014)
    Genetic analysis of the Complexin trans-clamping model for cross-linking SNARE complexes in vivo.
    Proc Natl Acad Sci USA, 111(28):10317-10322

  • Li, F., Kümmel, D., Coleman, J., Reinisch, K.M., Rothman, J.E., Pincet, F. (2014)
    A half-zippered SNARE complex represents a functional intermediate in membrane fusion.
    J. Am. Chem. Soc., 136:3456-3464

2013

 

  • Krishnakumar, S.S., Kümmel, D., Jones, S.J., Radoff, D.T., Reinisch, K.M., Rothman, J.E. (2013)
    Conformational dynamics of calcium-triggered activation of fusion by synaptotagmin.
    Biophys. J., 105:2507-2516

  • Shen, D., Yuan, H., Hutagalung, A., Verma, A., Kümmel, D., Wu, X., Reinisch, K., McNew, J.A., Novick, P. (2013)
    The synaptobrevin homologue Snc2p recruits the exocyst to secretory vesicles by binding to Sec6p.
    J. Cell Biol., 202:509-526



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