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秀丽隐杆线虫纺锤体组件LIN-5关键结构域及假定相互作用蛋白的鉴定

Identification of critical domains and putative partners for the Caenorhabditis elegans spindle component LIN-5.

作者信息

Fisk Green R, Lorson M, Walhout A J M, Vidal M, van den Heuvel S

机构信息

Massachusetts General Hospital Cancer Center (Bldg. 149), Harvard Medical School, Charlestown, MA 02129, USA.

出版信息

Mol Genet Genomics. 2004 Jun;271(5):532-44. doi: 10.1007/s00438-004-1012-x. Epub 2004 May 12.

Abstract

Successful cell division requires proper assembly, placement and functioning of the spindle apparatus that segregates the chromosomes. The Caenorhabditis elegans gene lin-5 encodes a novel coiled-coil component of the spindle required for spindle positioning and chromosome segregation. To gain further insights into lin-5 function, we screened for dominant suppressors of the partial loss-of-function phenotype associated with the mutation lin-5(ev571ts ), and isolated 68 suppressing mutations. Eight out of the ten suppressors sequenced contained intragenic missense mutations immediately upstream of the lesion in lin-5(ev571ts ). These probably help to stabilize protein-protein interactions mediated by the coiled-coil domain. This domain was found to be required for binding to several putative LIN-5 interacting (LFI) proteins identified in yeast two-hybrid screens. Interestingly, interaction with the coiled-coil protein LFI-1 was specifically reduced by the lin-5(ev571ts ) mutation and restored by a representative intragenic suppressor mutation. Immunostaining experiments showed that LIN-5 and LFI-1 may co-localize around the kinetochore microtubules during metaphase, indicating potential interaction in vivo. The coiled-coil domain of LIN-5 was also found to mediate homodimerization, while the C-terminal region of LIN-5 was sufficient for interaction with GPR-1, a recently identified component of a LIN-5 spindle-regulatory complex. A single amino-acid substitution in the N-terminal region of LIN-5, encoded by the e1457 allele, abolished all LIN-5 interactions. Taken together, our results indicate that the spindle functions of LIN-5 depend on interactions with multiple protein partners, and that these interactions are mediated through several different domains of LIN-5.

摘要

成功的细胞分裂需要纺锤体装置的正确组装、定位和功能,纺锤体装置负责分离染色体。秀丽隐杆线虫基因lin-5编码一种纺锤体的新型卷曲螺旋成分,该成分对于纺锤体定位和染色体分离是必需的。为了进一步深入了解lin-5的功能,我们筛选了与lin-5(ev571ts)突变相关的部分功能丧失表型的显性抑制子,并分离出68个抑制突变。在测序的十个抑制子中,有八个在lin-5(ev571ts)损伤位点上游紧邻处含有基因内错义突变。这些突变可能有助于稳定由卷曲螺旋结构域介导的蛋白质-蛋白质相互作用。发现该结构域对于与在酵母双杂交筛选中鉴定的几种假定的LIN-5相互作用(LFI)蛋白的结合是必需的。有趣的是,lin-5(ev571ts)突变特异性地降低了与卷曲螺旋蛋白LFI-1的相互作用,而一个代表性的基因内抑制突变恢复了这种相互作用。免疫染色实验表明,在中期,LIN-5和LFI-1可能在动粒微管周围共定位,表明在体内存在潜在的相互作用。还发现LIN-5的卷曲螺旋结构域介导同源二聚化,而LIN-5的C末端区域足以与GPR-1相互作用,GPR-1是最近鉴定的LIN-5纺锤体调节复合物的一个成分。由e1457等位基因编码的LIN-5 N末端区域的单个氨基酸取代消除了所有LIN-5的相互作用。综上所述,我们的结果表明,LIN-5的纺锤体功能依赖于与多个蛋白质伙伴的相互作用,并且这些相互作用是通过LIN-5的几个不同结构域介导的。

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