A complex of LIN-5 and GPR proteins regulates G protein signaling and spindle function in C-elegans

被引:185
作者
Srinivasan, DG [1 ]
Fisk, RM [1 ]
Xu, HH [1 ]
van den Heuvel, S [1 ]
机构
[1] Massachusetts Gen Hosp, Ctr Canc, Cambridge, MA 02129 USA
关键词
LIN-5; GoLoco motif; G protein; chromosome segregation; spindle position; ASYMMETRIC CELL-DIVISION; CLEAVAGE PLANE SPECIFICATION; G-ALPHA; CAENORHABDITIS-ELEGANS; GENETIC INTERFERENCE; ORIENTATION; NEMATODE; POLARITY; EXCHANGE; PARTNER;
D O I
10.1101/gad.1081203
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The Caenorhabditis elegans coiled-coil protein LIN-5 mediates several processes in cell division that depend on spindle forces, including alignment and segregation of chromosomes and positioning of the spindle. Here, we describe two closely related proteins, GPR-1 and GPR-2 (G protein regulator), which associate with LIN-5 in vivo and in vitro and depend on LIN-5 for localization to the spindle and cell cortex. GPR-1/GPR-2 contain a GoLoco/GPR motif that mediates interaction with GDP-bound Galpha(i/o). Inactivation of lin-5, gpr-1/gpr-2, or the Galpha(i/o) genes goa-1 and gpa-16 all cause highly similar chromosome segregation and spindle positioning defects, indicating a positive role for the LIN-5 and GPR proteins in G protein signaling. The lin-5 and gpr-1/gpr-2 genes appear to act downstream of the par polarity genes in the one- and two-cell stages and downstream of the tyrosine kinase-related genes mes-1 and src-1 at the four-cell stage. Together, these results indicate that GPR-1/GPR-2 in association with LIN-5 activate G protein signaling to affect spindle force. Polarity determinants may regulate LIN-5/GPR/Galpha locally to create the asymmetric forces that drive spindle movement. Results in C. elegans and other species are consistent with a novel model for receptor-independent activation of Galpha(i/o). signaling.
引用
收藏
页码:1225 / 1239
页数:15
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