首页> 美国卫生研究院文献>Acta Crystallographica Section D: Biological Crystallography >Small-angle neutron scattering reveals the assembly mode and oligomeric architecture of TET a large dodecameric aminopeptidase
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Small-angle neutron scattering reveals the assembly mode and oligomeric architecture of TET a large dodecameric aminopeptidase

机译:小角中子散射揭示了TET(一种大的十二聚氨基肽酶)的组装模式和寡聚结构

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摘要

The specific self-association of proteins into oligomeric complexes is a common phenomenon in biological systems to optimize and regulate their function. However, de novo structure determination of these important complexes is often very challenging for atomic-resolution techniques. Furthermore, in the case of homo-oligomeric complexes, or complexes with very similar building blocks, the respective positions of subunits and their assembly pathways are difficult to determine using many structural biology techniques. Here, an elegant and powerful approach based on small-angle neutron scattering is applied, in combination with deuterium labelling and contrast variation, to elucidate the oligomeric organization of the quaternary structure and the assembly pathways of 468 kDa, hetero-oligomeric and symmetric Pyrococcus horikoshii TET2–TET3 aminopeptidase complexes. The results reveal that the topology of the PhTET2 and PhTET3 dimeric building blocks within the complexes is not casual but rather suggests that their quaternary arrangement optimizes the catalytic efficiency towards peptide substrates. This approach bears important potential for the determination of quaternary structures and assembly pathways of large oligomeric and symmetric complexes in biological systems.
机译:蛋白质与寡聚复合物的特异性自缔合是生物系统中优化和调节其功能的普遍现象。然而,对于原子拆分技术而言,从头确定这些重要络合物的结构通常非常困难。此外,在同低聚复合物或具有非常相似的构建基的复合物的情况下,难以使用许多结构生物学技术来确定亚基的各自位置及其组装途径。在此,结合小分子中子散射和氘标记技术,运用一种优雅而强大的方法,结合氘标记和对比度变化,阐明了468 kDa,杂聚和对称火球菌的四元结构的低聚结构和组装途径。 TET2-TET3氨肽酶复合物。结果表明,配合物中PhTET2和PhTET3二聚体构建单元的拓扑结构不是随意的,而是表明它们的季结构优化了对肽底物的催化效率。该方法在确定生物系统中大型寡聚和对称复合物的四级结构和组装途径方面具有重要的潜力。

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