Perry Jason, Kleckner Nancy, Börner G Valentin
Department of Molecular and Cellular Biology, Harvard University, Cambridge, MA 02138, USA.
Proc Natl Acad Sci U S A. 2005 Dec 6;102(49):17594-9. doi: 10.1073/pnas.0508581102. Epub 2005 Nov 28.
Zip2 and Zip3 are meiosis-specific proteins that, in collaboration with several partners, act at the sites of crossover-designated, axis-associated recombinational interactions to mediate crossover/chiasma formation. Here, Spo22 (also called Zip4) is identified as a probable functional collaborator of Zip2/3. The molecular roles of Zip2, Zip3, and Spo22/Zip4 are unknown. All three proteins are part of a small evolutionary cohort comprising similar homologs in four related yeasts. Zip3 is shown to contain a RING finger whose structural features most closely match those of known ubiquitin E3s. Further, Zip3 exhibits major domainal homologies to Rad18, a known DNA-binding ubiquitin E3. Also described is an approach to the identification and mapping of repeated protein sequence motifs, Alignment Based Repeat Annotation (ABRA), that we have developed. When ABRA is applied to Zip2 and Spo22/Zip4, they emerge as a 14-blade WD40-like repeat protein and a 22-unit tetratricopeptide repeat protein, respectively. WD40 repeats of Cdc20, Cdh1, and Cdc16 and tetratricopeptide repeats of Cdc16, Cdc23, and Cdc27, all components of the anaphase-promoting complex, are also analyzed. These and other findings suggest that Zip2, Zip3, and Zip4 act together to mediate a process that involves Zip3-mediated ubiquitin labeling, potentially as a unique type of ubiquitin-conjugating complex.
Zip2和Zip3是减数分裂特异性蛋白,它们与几个伙伴协同作用,在指定交叉、与轴相关的重组相互作用位点发挥作用,以介导交叉/交叉形成。在这里,Spo22(也称为Zip4)被确定为Zip2/3可能的功能伙伴。Zip2、Zip3和Spo22/Zip4的分子作用尚不清楚。这三种蛋白质都是一个小型进化群体的一部分,该群体在四种相关酵母中包含相似的同源物。Zip3被证明含有一个RING结构域,其结构特征与已知的泛素E3最匹配。此外,Zip3与已知的DNA结合泛素E3 Rad18表现出主要的结构域同源性。还描述了一种我们开发的用于鉴定和绘制重复蛋白质序列基序的方法,即基于比对的重复注释(ABRA)。当ABRA应用于Zip2和Spo22/Zip4时,它们分别呈现为一种14叶片状WD40样重复蛋白和一种22单元的四肽重复蛋白。还分析了后期促进复合物的所有成分Cdc20、Cdh1和Cdc16的WD40重复序列以及Cdc16、Cdc23和Cdc27的四肽重复序列。这些以及其他发现表明,Zip2、Zip3和Zip4共同作用以介导一个涉及Zip3介导的泛素标记的过程,这可能是一种独特类型的泛素结合复合物。