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Program of the 2001 International Worm Meeting - Sternberg Lab ...

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Parallel 1A: RNAi<br />

Royce Hall Auditorium, Saturday<br />

9:00-11:00 am<br />

Mary Montgomery, Chair<br />

16. Characterization <strong>of</strong> RNAi-sensitive<br />

mutators and <strong>the</strong> C. elegans Dicer homolog<br />

Sylvia E.J. Fischer, Rene F. Ketting,<br />

Pawel Pasierbek, Karen L. Thijssen,<br />

Ronald H.A. Plasterk<br />

17. ego-1, a link between germline<br />

development and RNAi<br />

Eleanor M. Maine, Valarie E. Vought,<br />

Jamie Wasilenko.<br />

18. Using RNAi to identify new components <strong>of</strong><br />

<strong>the</strong> RNAi machinery<br />

Nathaniel R. Dudley, Jean-Claude <strong>Lab</strong>bé,<br />

Bob Goldstein<br />

19. Potential for Cross-Interference with RNAi<br />

Jeff Norman, Erin Bishop, Mary K.<br />

Montgomery<br />

20. Mutants <strong>of</strong> C. elegans defective in uptake<br />

<strong>of</strong> dsRNA in RNAi<br />

Femke Simmer, Marcel Tijsterman, Kristy<br />

L. Okihara, Rene F, Ketting, Ronald H.A.<br />

Plasterk<br />

21. RNAi analysis <strong>of</strong> 762 germline enriched<br />

genes.<br />

Fabio Piano, Aaron Schetter, Diane<br />

Morton, Kris Gunsalus, Valerie Reinke,<br />

Stuart Kim, Kenneth Kemphues<br />

22. Roles for embryonic lethal genes on C.<br />

elegans Chromosome I identified by RNA<br />

interference and 4-dimensional<br />

video-microscopy and identification <strong>of</strong> a<br />

new Par-like gene<br />

Peder Zipperlen, Andrew G Fraser, Ravi<br />

S Kamath, Nathalie Le Bot, Monica Gotta,<br />

Maruxa Martinez-Campos, Julie Ahringer<br />

23. Genome-wide functional analysis by<br />

RNAi-by-soaking with a non-redundant<br />

cDNA set<br />

Ikuma Maeda, Atsuko Minamida,<br />

Masayuki Yamamoto, Yuji Kohara, Asako<br />

Sugimoto<br />

24. Identification <strong>of</strong> C. elegans genes required<br />

for <strong>the</strong> DNA damage response using a<br />

combination <strong>of</strong> functional genomic approaches<br />

Simon Boulton, Anton Gartner, Philippe<br />

Vaglio, Jérôme Reboul, David Hill, Marc Vidal<br />

Parallel 1B: Signal transduction<br />

Alex Hajnal, Chair<br />

25. Two RGS proteins that inhibit Galphao and<br />

Galphaq signaling in C. elegans neurons<br />

require a Gbeta5-like subunit for function<br />

Daniel L. Chase, Georgia A. Patikoglou,<br />

Michael R. Koelle<br />

26. eat-11 encodes GPB-2, a Gbeta5 ortholog<br />

that interacts with G o alpha and G q alpha to<br />

regulate C. elegans behavior<br />

Merrilee Robatzek * , Timothy Niacaris * ,<br />

Kate Steger, Leon Avery, James H.<br />

Thomas<br />

27. An N-terminal region <strong>of</strong> C. elegans RGS<br />

proteins EGL-10 and EAT-16 directs<br />

inhibition <strong>of</strong> Go alpha versus Gq alpha<br />

signaling<br />

Georgia A. Patikoglou, Michael R. Koelle<br />

28. Novel downstream targets <strong>of</strong> GOA-1,<br />

EGL-30, GPA-12 and <strong>the</strong> C. elegans<br />

specific G-proteins<br />

Alexander M. van der Linden, Edwin<br />

Cuppen, Femke Simmer, Celine Moorman,<br />

Ronald H.A. Plasterk<br />

29. THE G-PROTEIN COUPLED<br />

RECEPTOR SML-1 ANTAGONISES<br />

RAS/MAP KINASE SIGNALLING<br />

DURING OLFACTION AND VULVAL<br />

DEVELOPMENT<br />

Gopal Battu, Stefano Canevascini,<br />

Thomas Berset, Erika Fr„hli, Alex Hajnal<br />

30. Modulation <strong>of</strong> inductive signaling during<br />

C. elegans vulval development<br />

Nadeem Moghal, Chieh Chang, L. Rene<br />

Garcia, Paul W. <strong>Sternberg</strong><br />

31. C. elegans POP-1/TCF functions in a<br />

canonical Wnt pathway that controls cell<br />

migration and a noncanonical Wnt pathway<br />

that controls cell polarity<br />

Michael A. Herman, Kelly Greene

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