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The Radially Swollen 4 Separase Mutation of Arabidopsis thaliana Blocks Chromosome Disjunction and Disrupts the Radial Microtubule System in Meiocytes

机译:拟南芥的径向溶胀的4个分离酶突变可阻断染色体分离并破坏肌细胞的径向微管系统

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摘要

The caspase-family protease, separase, is required at the onset of anaphase to cleave the cohesin complex that joins replicated sister chromatids. However, in various eukaryotes, separase has acquired additional and distinct functions. A single amino-acid substitution in separase is responsible for phenotypes of the Arabidopsis thaliana mutant, radially swollen 4 (rsw4). This is a conditional mutant, resembling the wild type at the permissive temperature (∼20°C) and expressing mutant phenotypes at the restrictive temperature (∼30°C). Root cells in rsw4 at the restrictive temperature undergo non-disjunction and other indications of the loss of separase function. To determine to what extent separase activity remains at 30°C, we examined the effect of the mutation on meiosis, where the effects of loss of separase activity through RNA interference are known; and in addition, we examined female gametophyte development. Here, we report that, at the restrictive temperature, replicated chromosomes in rsw4 meiocytes typically fail to disjoin and the cohesin complex remains at centromeres after metaphase. Meiotic spindles appear normal in rsw4 male meiocytes; however the mutation disrupts the radial microtubule system, which is replaced by asymmetric arrays. Surprisingly, female gametophyte development was relatively insensitive to loss of separase activity, through either rsw4 or RNAi. These effects confirm that phenotypes in rsw4 result from loss of separase activity and establish a role for separase in regulating cell polarization following male meiosis.
机译:在后期开始时需要半胱天冬酶家族蛋白酶,分离酶,以裂解连接复制的姐妹染色单体的粘着蛋白复合物。但是,在各种真核生物中,separase获得了额外的独特功能。 separase中的单个氨基酸取代负责拟南芥突变体的表型,径向突变型4(rsw4)。这是一个条件突变体,类似于在允许温度(〜20°C)下的野生型,并在极限温度(〜30°C)下表达突变型。限制性温度下rsw4中的根细胞不分离,并显示其他分离酶功能丧失的迹象。为了确定分离酶活性在30°C下保持到何种程度,我们研究了突变对减数分裂的影响,其中已知通过RNA干扰分离酶活性的影响。此外,我们研究了雌配子体发育。在这里,我们报告说,在限制性温度下,rsw4减数分裂细胞中的复制染色体通常无法解体,而粘着蛋白复合物在中期后仍保留在着丝粒上。减数分裂纺锤体在rsw4男性减数分裂细胞中显示正常;然而,这种突变破坏了径向微管系统,该系统被不对称阵列所取代。出人意料的是,雌配子体发育对通过rsw4或RNAi的分离酶活性丧失相对不敏感。这些效应证实,rsw4中的表型是由Separase活性丧失引起的,并且在Separase调控男性减数分裂后的细胞极化过程中发挥了作用。

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