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Prof. Dr. David G. Robinson Department of Cell Biology ... - HBIGS

Prof. Dr. David G. Robinson Department of Cell Biology ... - HBIGS

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FIELDS OF INTEREST<br />

Plant <strong>Cell</strong> <strong>Biology</strong>: vesicle-mediated protein transport, ER-Golgi dynamics, the prevacuolar<br />

compartment, endocytosis, vacuole biogenesis, storage protein sorting<br />

CURRENTLY FUNDED PROJECTS<br />

DFG RO 440/11-3; DFG RO 440/13-2; DFG PI 769/1-1; EU - Pharma Planta, Ph.D.<br />

programme; DAAD: PROCOPE; DAAD: PPP Hong Kong; ERA-PG NET PRECIAR<br />

PUBLICATIONS (10 most important publications):<br />

Dhonukshe P, Aniento F, Hwang I, <strong>Robinson</strong> D G, Mravec J, Stierh<strong>of</strong> Y D, Friml J (2007)<br />

Clathrin-mediated constitutive endocytosis <strong>of</strong> PIN auxin efflux carriers in<br />

Arabidopsis. Current Biol. (in press).<br />

Van <strong>Dr</strong>oogenbroeck B, Cao J, Stadlmann J, Altmann F, Colanesi S, Hillmer S,. <strong>Robinson</strong> D<br />

G, van Lerberge E, Terryn N, van Monatgu M, Liang M, Depicker A, de Jaeger G,<br />

(2007) Aberrant localization and underglycosylation <strong>of</strong> highly accumulating single<br />

chain Fv-Fc antibodies in transgenic Arabidopsis seeds. PNAS (USA) 104: 1430-<br />

1435<br />

Oliviusson P, Heinzerling O, Hillmer S, Hinz G, Tse Y C, Jiang L, <strong>Robinson</strong> D G (2006) Plant<br />

retromer, localized to the prevacuolar compartment and microvesicles in<br />

Arabidopsis, may interact with vacuolar sorting receptors. Plant <strong>Cell</strong> 18: 1239-1252<br />

Yang Y, el Amawi R, Pepperkok R, Ritzenthaler C, <strong>Robinson</strong> D G, (2005) Visualization <strong>of</strong><br />

ER-exit sites in tobacco BY-2 cells. Plant <strong>Cell</strong> 17: 1513-1531<br />

Tse Y C, Mo B, Hillmer S, Zhao M, Lo S W, <strong>Robinson</strong> D G, Jiang L (2004) Identification <strong>of</strong><br />

multivesicular compartments as prevacuolar compartments in Nicotiana tabacum<br />

BY-2 cells. Plant <strong>Cell</strong> 16: 672-693<br />

Ritzenthaler C, Nebenfuehr A, Movafeghi A, Stussi-Garaud C, Behnia L, Pimpl P, Staehelin,<br />

A, <strong>Robinson</strong> D G (2002) Re-evaluation <strong>of</strong> the effects <strong>of</strong> Brefeldin A on plant cells<br />

using tobacco bright yellow 2 cells expressing Golgi-targeted green fluorescent<br />

protein and COPI antisera. Plant <strong>Cell</strong> 14, 237-261<br />

Phillipson B A, Pimpl P, Pinto da Silva L L, Cr<strong>of</strong>ts A J, Taylor J P,<br />

Movafeghi A, <strong>Robinson</strong> D G (2001) Secretory bulk flow <strong>of</strong> soluble proteins is<br />

efficient and COPII dependent. Plant <strong>Cell</strong> 13, 2005-2020.<br />

Hillmer S , Movafeghi A , <strong>Robinson</strong> D G, Hinz G (2001) Vacuolar storage<br />

proteins are sorted in the cis-cisternae <strong>of</strong> the pea cotyledon Golgi-apparatus. J. <strong>Cell</strong><br />

Biol. 152, 41-50<br />

Pimpl P , Movafeghi A, Coughlan S, Denecke J, Hillmer S, <strong>Robinson</strong> D G (2000) In situ<br />

localization and in vitro induction <strong>of</strong> plant COPI-coated vesicles. Plant <strong>Cell</strong> 12, 2219-<br />

2235<br />

Movafeghi A, Happel N, Pimpl P, Tai G H, <strong>Robinson</strong>, D G (1999) Arabidopsis Sec21p and<br />

Sec23p homologs. Probable coat proteins <strong>of</strong> plant COP-coated vesicles. Plant<br />

Physiol. 119, 1437-1445

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