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首页> 外文期刊>Cell Regulation >A Zip3-like protein plays a role in crossover formation in the SC-less meiosis of the protist Tetrahymena
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A Zip3-like protein plays a role in crossover formation in the SC-less meiosis of the protist Tetrahymena

机译:Zip3样蛋白在无性四膜虫的无SC减数分裂中的交叉形成中起作用

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摘要

When programmed meiotic DNA double-strand breaks (DSBs) undergo recombinational repair, genetic crossovers (COs) may be formed. A certain level of this is required for the faithful segregation of chromosomes, but the majority of DSBs are processed toward a safer alternative, namely noncrossovers (NCOs), via nonreciprocal DNA exchange. At the crossroads between these two DSB fates is the Msh4-Msh5 (MutSγ) complex, which stabilizes CO-destined recombination intermediates and members of the Zip3/RNF212 family of RING finger proteins, which in turn stabilize MutSγ. These proteins function in the context of the synaptonemal complex (SC) and mainly act on SC-dependent COs. Here we show that in the SC-less ciliate Tetrahymena , Zhp3 (a protein distantly related to Zip3/RNF212), together with MutSγ, is responsible for the majority of COs. This activity of Zhp3 suggests an evolutionarily conserved SC-independent strategy for balancing CO:NCO ratios. Moreover, we report a novel meiosis-specific protein, Sa15, as an interacting partner of Zhp3. Sa15 forms linear structures in meiotic prophase nuclei to which Zhp3 localizes. Sa15 is required for a wild-type level of CO formation. Its linear organization suggests the existence of an underlying chromosomal axis that serves as a scaffold for Zhp3 and other recombination proteins.
机译:当编程的减数分裂DNA双链断裂(DSB)进行重组修复时,可能会形成遗传交叉(CO)。忠实地分离染色体需要一定程度的这种水平,但是大多数DSB会通过不可逆的DNA交换被加工成更安全的替代方案,即非交叉(NCO)。这两个DSB命运之间的十字路口是Msh4-Msh5(MutSγ)复合物,该复合物稳定了以CO为目的地的重组中间产物和RING指状蛋白Zip3 / RNF212家族的成员,从而稳定了MutSγ。这些蛋白质在突触复合物(SC)的背景下起作用,并且主要作用于依赖SC的CO。在这里,我们显示在无SC纤毛四膜虫中,Zhp3(一种与Zip3 / RNF212远距离相关的蛋白质)与MutSγ一起负责大部分CO。 Zhp3的这种活性表明,在平衡CO:NCO比率方面,采用了一种进化上保守的SC独立策略。此外,我们报告了一种新型减数分裂特异性蛋白Sa15,它是Zhp3的相互作用伴侣。 Sa15在Zhp3定位的减数分裂前期核中形成线性结构。 Sa15是野生型水平的一氧化碳形成所必需的。它的线性结构表明存在潜在的染色体轴,该轴可作为Zhp3和其他重组蛋白的支架。

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