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在秀丽隐杆线虫中,由 HIM-6(BLM)解旋酶、SLX-4 和 SLX-1、MUS-81 和 XPF-1 核酸内切酶进行的减数分裂 Holliday 连接体的组合调控。

Combinatorial regulation of meiotic holliday junction resolution in C. elegans by HIM-6 (BLM) helicase, SLX-4, and the SLX-1, MUS-81 and XPF-1 nucleases.

机构信息

Centre for Gene Regulation and Expression, University of Dundee, Dundee, United Kingdom.

出版信息

PLoS Genet. 2013;9(7):e1003591. doi: 10.1371/journal.pgen.1003591. Epub 2013 Jul 18.

Abstract

Holliday junctions (HJs) are cruciform DNA structures that are created during recombination events. It is a matter of considerable importance to determine the resolvase(s) that promote resolution of these structures. We previously reported that C. elegans GEN-1 is a symmetrically cleaving HJ resolving enzyme required for recombinational repair, but we could not find an overt role in meiotic recombination. Here we identify C. elegans proteins involved in resolving meiotic HJs. We found no evidence for a redundant meiotic function of GEN-1. In contrast, we discovered two redundant HJ resolution pathways likely coordinated by the SLX-4 scaffold protein and also involving the HIM-6/BLM helicase. SLX-4 associates with the SLX-1, MUS-81 and XPF-1 nucleases and has been implicated in meiotic recombination in C. elegans. We found that C. elegans [mus-81; xpf-1], [slx-1; xpf-1], [mus-81; him-6] and [slx-1; him-6] double mutants showed a similar reduction in survival rates as slx-4. Analysis of meiotic diakinesis chromosomes revealed a distinct phenotype in these double mutants. Instead of wild-type bivalent chromosomes, pairs of "univalents" linked by chromatin bridges occur. These linkages depend on the conserved meiosis-specific transesterase SPO-11 and can be restored by ionizing radiation, suggesting that they represent unresolved meiotic HJs. This suggests the existence of two major resolvase activities, one provided by XPF-1 and HIM-6, the other by SLX-1 and MUS-81. In all double mutants crossover (CO) recombination is reduced but not abolished, indicative of further redundancy in meiotic HJ resolution. Real time imaging revealed extensive chromatin bridges during the first meiotic division that appear to be eventually resolved in meiosis II, suggesting back-up resolution activities acting at or after anaphase I. We also show that in HJ resolution mutants, the restructuring of chromosome arms distal and proximal to the CO still occurs, suggesting that CO initiation but not resolution is likely to be required for this process.

摘要

霍利迪连接点(HJs)是在重组事件中形成的十字形 DNA 结构。确定促进这些结构解析的解旋酶(resolvase)是一个非常重要的问题。我们之前报道过,线虫 GEN-1 是一种对称切割 HJ 解析酶,是重组修复所必需的,但我们没有发现它在减数分裂重组中发挥明显作用。在这里,我们鉴定了参与解析减数分裂 HJ 的线虫蛋白。我们没有发现 GEN-1 在减数分裂中有冗余功能的证据。相反,我们发现了两条冗余的 HJ 解析途径,这些途径可能由 SLX-4 支架蛋白协调,也可能涉及 HIM-6/BLM 解旋酶。SLX-4 与 SLX-1、MUS-81 和 XPF-1 核酸酶结合,并被认为与线虫减数分裂重组有关。我们发现,线虫 [mus-81; xpf-1]、[slx-1; xpf-1]、[mus-81; him-6] 和 [slx-1; him-6] 双突变体的存活率与 slx-4 相似。在这些双突变体中,对减数分裂二分体期染色体的分析显示出明显的表型。除了野生型二价染色体外,还出现了由染色质桥连接的“单价染色体”对。这些连接依赖于保守的减数分裂特异性转酯酶 SPO-11,可以通过电离辐射恢复,表明它们代表未解决的减数分裂 HJ。这表明存在两种主要的解旋酶活性,一种由 XPF-1 和 HIM-6 提供,另一种由 SLX-1 和 MUS-81 提供。在所有双突变体中,交叉(CO)重组减少但未完全消除,表明减数分裂 HJ 解析中存在进一步的冗余。实时成像显示,第一次减数分裂期间存在广泛的染色质桥,这些桥似乎最终在减数分裂 II 中得到解决,这表明在后期 I 或之后存在备用的解决活性。我们还表明,在 HJ 解析突变体中,CO 起始但不是解析,可能是染色体臂在 CO 远端和近端的重排仍在发生所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8dc/3715425/ce68f4c0033a/pgen.1003591.g001.jpg

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