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Phylogenomics-guided discovery of a novel conserved cassette of short linear motifs in BubR1 essential for the spindle checkpoint

机译:药理学指导下在BubR1中发现的一种新型保守的短线性基序盒对纺锤体检查点必不可少

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摘要

The spindle assembly checkpoint (SAC) maintains genomic integrity by preventing progression of mitotic cell division until all chromosomes are stably attached to spindle microtubules. The SAC critically relies on the paralogues Bub1 and BubR1/Mad3, which integrate kinetochore–spindle attachment status with generation of the anaphase inhibitory complex MCC. We previously reported on the widespread occurrences of independent gene duplications of an ancestral ‘MadBub’ gene in eukaryotic evolution and the striking parallel subfunctionalization that lead to loss of kinase function in BubR1/Mad3-like paralogues. Here, we present an elaborate subfunctionalization analysis of the Bub1/BubR1 gene family and perform de novo sequence discovery in a comparative phylogenomics framework to trace the distribution of ancestral sequence features to extant paralogues throughout the eukaryotic tree of life. We show that known ancestral sequence features are consistently retained in the same functional paralogue: GLEBS/CMI/CDII/kinase in the Bub1-like and KEN1/KEN2/D-Box in the BubR1/Mad3-like. The recently described ABBA motif can be found in either or both paralogues. We however discovered two additional ABBA motifs that flank KEN2. This cassette of ABBA1-KEN2-ABBA2 forms a strictly conserved module in all ancestral and BubR1/Mad3-like proteins, suggestive of a specific and crucial SAC function. Indeed, deletion of the ABBA motifs in human BUBR1 abrogates the SAC and affects APC/C–Cdc20 interactions. Our detailed comparative genomics analyses thus enabled discovery of a conserved cassette of motifs essential for the SAC and shows how this approach can be used to uncover hitherto unrecognized functional protein features.
机译:纺锤体装配检查点(SAC)通过防止有丝分裂细胞分裂的进行直至所有染色体稳定地附着在纺锤体微管上,从而维持基因组完整性。 SAC至关重要地依赖于类似物Bub1和BubR1 / Mad3,它们将动线体-纺锤体的附着状态与后期抑制复合物MCC的产生结合在一起。我们之前曾报道过祖先“ MadBub”基因在真核生物进化中独立基因重复的广泛发生,以及惊人的平行亚功能化,导致BubR1 / Mad3类旁系同源物激酶功能丧失。在这里,我们介绍Bub1 / BubR1基因家族的详尽的亚功能化分析,并在比较系统进化组学框架中进行从头测序,以追踪祖先序列特征在整个真核生物树中的现存旁系同源物的分布。我们显示,已知的祖先序列特征始终保留在相同的功能旁系同源物中:像Bub1一样的GLEBS / CMI / CDII /激酶和像BubR1 / Mad3一样的KEN1 / KEN2 / D-Box。最近描述的ABBA基序可以在一个或两个旁系同源物中找到。但是,我们发现了位于KEN2侧面的另外两个ABBA图案。 ABBA1-KEN2-ABBA2的这种盒在所有祖先和BubR1 / Mad3样蛋白质中形成严格保守的模块,暗示了特定且至关重要的SAC功能。确实,人BUBR1中ABBA基序的缺失消除了SAC,并影响了APC / C-Cdc20的相互作用。因此,我们详细的比较基因组学分析使我们能够发现SAC必不可少的保守基序盒,并显示了如何使用这种方法来揭示迄今为止无法识别的功能蛋白特征。

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