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联会复合体(SC)成分Zip1在减数分裂重组中发挥作用,独立于沿染色体的SC聚合。

Synaptonemal complex (SC) component Zip1 plays a role in meiotic recombination independent of SC polymerization along the chromosomes.

作者信息

Storlazzi A, Xu L, Schwacha A, Kleckner N

机构信息

Department of Molecular and Cellular Biology, Harvard University, Cambridge, MA 02138, USA.

出版信息

Proc Natl Acad Sci U S A. 1996 Aug 20;93(17):9043-8. doi: 10.1073/pnas.93.17.9043.

Abstract

Zip1 is a yeast synaptonemal complex (SC) central region component and is required for normal meiotic recombination and crossover interference. Physical analysis of meiotic recombination in a zip1 mutant reveals the following: Crossovers appear later than normal and at a reduced level. Noncrossover recombinants, in contrast, seem to appear in two phases: (i) a normal number appear with normal timing and (ii) then additional products appear late, at the same time as crossovers. Also, Holliday junctions are present at unusually late times, presumably as precursors to late-appearing products. Red1 is an axial structure component required for formation of cytologically discernible axial elements and SC and maximal levels of recombination. In a red1 mutant, crossovers and noncrossovers occur at coordinately reduced levels but with normal timing. If Zip1 affected recombination exclusively via SC polymerization, a zip1 mutation should confer no recombination defect in a red1 strain background. But a red1 zip1 double mutant exhibits the sum of the two single mutant phenotypes, including the specific deficit of crossovers seen in a zip1 strain. We infer that Zip1 plays at least one role in recombination that does not involve SC polymerization along the chromosomes. Perhaps some Zip1 molecules act first in or around the sites of recombinational interactions to influence the recombination process and thence nucleate SC formation. We propose that a Zip1-dependent, pre-SC transition early in the recombination reaction is an essential component of meiotic crossover control. A molecular basis for crossover/noncrossover differentiation is also suggested.

摘要

Zip1是酵母联会复合体(SC)中央区域的一个组分,对于正常的减数分裂重组和交叉干涉是必需的。对zip1突变体中减数分裂重组的物理分析揭示了以下情况:交叉出现的时间比正常情况晚,且水平降低。相比之下,非交叉重组体似乎分两个阶段出现:(i)正常数量的非交叉重组体在正常时间出现,(ii)然后额外的产物出现较晚,与交叉同时出现。此外,霍利迪连接在异常晚的时间出现,大概是作为晚期出现产物的前体。Red1是一种轴向结构组分,对于细胞学上可识别的轴向元件和SC的形成以及最大水平的重组是必需的。在red1突变体中,交叉和非交叉以协调降低的水平发生,但时间正常。如果Zip1仅通过SC聚合影响重组,那么zip1突变在red1菌株背景中不应导致重组缺陷。但是red1 zip1双突变体表现出两种单突变体表型的总和,包括在zip1菌株中看到的交叉的特定缺陷。我们推断Zip1在重组中至少起一种不涉及沿染色体的SC聚合的作用。也许一些Zip1分子首先在重组相互作用的位点或其周围起作用,以影响重组过程,从而促使SC形成。我们提出,在重组反应早期的一个依赖Zip1的、SC前转变是减数分裂交叉控制的一个重要组成部分。还提出了交叉/非交叉分化的分子基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4d9/38592/8bbba317dce1/pnas01521-0258-a.jpg

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