Role of formins in actin assembly: nucleation and barbed-end association D Pruyne, M Evangelista, C Yang, E Bi, S Zigmond, A Bretscher, C Boone Science 297 (5581), 612-615, 2002 | 961 | 2002 |
Polarization of cell growth in yeast II. The role of the cortical actin cytoskeleton D Pruyne, A Bretscher Journal of cell science 113 (4), 571-585, 2000 | 716 | 2000 |
Formins direct Arp2/3-independent actin filament assembly to polarize cell growth in yeast M Evangelista, D Pruyne, DC Amberg, C Boone, A Bretscher Nature cell biology 4 (1), 32-41, 2002 | 624 | 2002 |
Polarization of cell growth in yeast: I. Establishment and maintenance of polarity states D Pruyne, A Bretscher Journal of cell science 113 (3), 365-375, 2000 | 553 | 2000 |
Mechanisms of polarized growth and organelle segregation in yeast D Pruyne, A Legesse-Miller, L Gao, Y Dong, A Bretscher Annu. Rev. Cell Dev. Biol. 20 (1), 559-591, 2004 | 467 | 2004 |
Tropomyosin-containing actin cables direct the Myo2p-dependent polarized delivery of secretory vesicles in budding yeast DW Pruyne, DH Schott, A Bretscher The Journal of cell biology 143 (7), 1931-1945, 1998 | 434 | 1998 |
Myosin V orientates the mitotic spindle in yeast H Yin, D Pruyne, TC Huffaker, A Bretscher Nature 406 (6799), 1013-1015, 2000 | 404 | 2000 |
The COOH-terminal domain of Myo2p, a yeast myosin V, has a direct role in secretory vesicle targeting D Schott, J Ho, D Pruyne, A Bretscher The Journal of cell biology 147 (4), 791-808, 1999 | 336 | 1999 |
Formin-dependent actin assembly is regulated by distinct modes of Rho signaling in yeast Y Dong, D Pruyne, A Bretscher The Journal of cell biology 161 (6), 1081-1092, 2003 | 206 | 2003 |
Stable and dynamic axes of polarity use distinct formin isoforms in budding yeast D Pruyne, L Gao, E Bi, A Bretscher Molecular biology of the cell 15 (11), 4971-4989, 2004 | 203 | 2004 |
Assembly and maintenance of myofibrils in striated muscle JW Sanger, J Wang, Y Fan, J White, L Mi-Mi, DK Dube, JM Sanger, ... The Actin Cytoskeleton, 39-75, 2017 | 69 | 2017 |
Z-line formins promote contractile lattice growth and maintenance in striated muscles of C. elegans L Mi-Mi, SB Votra, K Kemphues, A Bretscher, D Pruyne Journal of Cell Biology 198 (1), 87-102, 2012 | 63 | 2012 |
Revisiting the phylogeny of the animal formins: two new subtypes, relationships with multiple wing hairs proteins, and a lost human formin D Pruyne PLoS One 11 (10), e0164067, 2016 | 50 | 2016 |
A Zn-finger/FH2-domain containing protein, FOZI-1, acts redundantly with CeMyoD to specify striated body wall muscle fates in the Caenorhabditis elegans postembryonic mesoderm NM Amin, K Hu, D Pruyne, D Terzic, A Bretscher, J Liu Oxford University Press for The Company of Biologists Limited 134 (1), 19-29, 2007 | 37 | 2007 |
The role of the formin gene fhod-1 in C. elegans embryonic morphogenesis CA Vanneste, D Pruyne, PE Mains Worm 2 (3), e25040, 2013 | 22 | 2013 |
Inverted formins: A subfamily of atypical formins A Hegsted, CV Yingling, D Pruyne Cytoskeleton 74 (11), 405-419, 2017 | 20 | 2017 |
INF2‐ and FHOD‐related formins promote ovulation in the somatic gonad of C. elegans A Hegsted, FA Wright, SB Votra, D Pruyne Cytoskeleton 73 (12), 712-728, 2016 | 18 | 2016 |
Tropomyosin function in yeast D Pruyne Tropomyosin, 168-186, 2008 | 16 | 2008 |
Probing the origins of metazoan formin diversity: Evidence for evolutionary relationships between metazoan and non-metazoan formin subtypes D Pruyne PLoS One 12 (10), e0186081, 2017 | 15 | 2017 |
Loss of sarcomere-associated formins disrupts Z-line organization, but does not prevent thin filament assembly in Caenorhabditis elegans muscle L Mi-Mi, D Pruyne Journal of cytology & histology 6 (2), 2015 | 15 | 2015 |