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Hop1 HORMA 结构域的构象动力学揭示了与纺锤体检验点蛋白 Mad2 的共同机制。

Conformational dynamics of the Hop1 HORMA domain reveal a common mechanism with the spindle checkpoint protein Mad2.

机构信息

Ludwig Institute for Cancer Research, San Diego Branch, La Jolla, CA 92093, USA.

Biomedical Sciences Graduate Program, University of California, San Diego, La Jolla, CA 92093, USA.

出版信息

Nucleic Acids Res. 2018 Jan 9;46(1):279-292. doi: 10.1093/nar/gkx1196.

Abstract

The HORMA domain is a highly conserved protein-protein interaction module found in eukaryotic signaling proteins including the spindle assembly checkpoint protein Mad2 and the meiotic HORMAD proteins. HORMA domain proteins interact with short 'closure motifs' in partner proteins by wrapping their C-terminal 'safety belt' region entirely around these motifs, forming topologically-closed complexes. Closure motif binding and release requires large-scale conformational changes in the HORMA domain, but such changes have only been observed in Mad2. Here, we show that Saccharomyces cerevisiae Hop1, a master regulator of meiotic recombination, possesses conformational dynamics similar to Mad2. We identify closure motifs in the Hop1 binding partner Red1 and in Hop1 itself, revealing that HORMA domain-closure motif interactions underlie both Hop1's initial recruitment to the chromosome axis and its self-assembly on the axis. We further show that Hop1 adopts two distinct folded states in solution, one corresponding to the previously-observed 'closed' conformation, and a second more extended state in which the safety belt region has disengaged from the HORMA domain core. These data reveal strong mechanistic similarities between meiotic HORMADs and Mad2, and provide a mechanistic basis for understanding both meiotic chromosome axis assembly and its remodeling by the AAA+ ATPase Pch2/TRIP13.

摘要

HORMA 结构域是一种高度保守的蛋白-蛋白相互作用模块,存在于真核信号蛋白中,包括纺锤体组装检查点蛋白 Mad2 和减数分裂 HORMAD 蛋白。HORMA 结构域蛋白通过将其 C 端“安全带”区域完全包裹在伴侣蛋白的短“封闭基序”上来与这些基序相互作用,形成拓扑封闭复合物。封闭基序的结合和释放需要 HORMA 结构域的大规模构象变化,但这种变化仅在 Mad2 中观察到。在这里,我们表明酿酒酵母 Hop1 是减数分裂重组的主要调节剂,具有类似于 Mad2 的构象动力学。我们在 Hop1 的结合伴侣 Red1 和 Hop1 本身中鉴定出封闭基序,揭示了 HORMA 结构域-封闭基序相互作用是 Hop1 最初被招募到染色体轴上以及在轴上自我组装的基础。我们进一步表明,Hop1 在溶液中采用两种不同的折叠状态,一种对应于先前观察到的“封闭”构象,另一种更伸展的状态,其中安全带区域与 HORMA 结构域核心脱离。这些数据揭示了减数分裂 HORMAD 和 Mad2 之间的强机制相似性,并为理解减数分裂染色体轴的组装及其由 AAA+ATP 酶 Pch2/TRIP13 重塑提供了机制基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7195/5758881/9df1f7feb2fd/gkx1196fig1.jpg

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