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首页> 外文期刊>Journal of Molecular Biology >Crystal structures of Bacillus subtilis Lon protease.
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Crystal structures of Bacillus subtilis Lon protease.

机译:枯草芽孢杆菌Lon蛋白酶的晶体结构。

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摘要

Lon ATP-dependent proteases are key components of the protein quality control systems of bacterial cells and eukaryotic organelles. Eubacterial Lon proteases contain an N-terminal domain, an ATPase domain, and a protease domain, all in one polypeptide chain. The N-terminal domain is thought to be involved in substrate recognition, the ATPase domain in substrate unfolding and translocation into the protease chamber, and the protease domain in the hydrolysis of polypeptides into small peptide fragments. Like other AAA+ ATPases and self-compartmentalising proteases, Lon functions as an oligomeric complex, although the subunit stoichiometry is currently unclear. Here, we present crystal structures of truncated versions of Lon protease from Bacillus subtilis (BsLon), which reveal previously unknown architectural features of Lon complexes. Our analytical ultracentrifugation and electron microscopy show different oligomerisation of Lon proteases from two different bacterial species, Aquifex aeolicus and B. subtilis. The structure of BsLon-AP shows a hexameric complex consisting of a small part of the N-terminal domain, the ATPase, and protease domains. The structure shows the approximate arrangement of the three functional domains of Lon. It also reveals a resemblance between the architecture of Lon proteases and the bacterial proteasome-like protease HslUV. Our second structure, BsLon-N, represents the first 209 amino acids of the N-terminal domain of BsLon and consists of a globular domain, similar in structure to the E. coli Lon N-terminal domain, and an additional four-helix bundle, which is part of a predicted coiled-coil region. An unexpected dimeric interaction between BsLon-N monomers reveals the possibility that Lon complexes may be stabilised by coiled-coil interactions between neighbouring N-terminal domains. Together, BsLon-N and BsLon-AP are 36 amino acids short of offering a complete picture of a full-length Lon protease.
机译:Lon ATP依赖性蛋白酶是细菌细胞和真核细胞器蛋白质质量控​​制系统的关键组成部分。真细菌Lon蛋白酶在一条多肽链中都包含一个N末端结构域,一个ATPase域和一个蛋白酶结构域。 N-末端结构域被认为与底物识别有关,底物中的ATPase结构域展开并易位进入蛋白酶腔,而多肽水解成小肽片段时则涉及蛋白酶结构域。像其他AAA + ATP酶和自我分隔蛋白酶一样,Lon可以作为寡聚复合物发挥作用,尽管目前尚不清楚亚基化学计量。在这里,我们介绍了枯草芽孢杆菌(BsLon)的Lon蛋白酶的截短版本的晶体结构,揭示了Lon复杂的以前未知的建筑特征。我们的分析超速离心和电子显微镜显示了来自两种不同细菌物种Aquifex aeolicus和B.subtilis的Lon蛋白酶的不同寡聚。 BsLon-AP的结构显示六聚体复合物,该复合物由一小部分N末端结构域,ATPase和蛋白酶结构域组成。该结构显示了Lon的三个功能域的大致排列。它还揭示了Lon蛋白酶的结构与细菌蛋白酶体样蛋白酶HslUV之间的相似之处。我们的第二个结构BsLon-N代表BsLon N端结构域的前209个氨基酸,由球形结构域(与大肠杆菌Lon N端结构域相似)和一个附加的四螺旋束组成,它是预测的卷曲线圈区域的一部分。 BsLon-N单体之间意想不到的二聚体相互作用揭示了Lon络合物可以通过相邻N末端结构域之间的螺旋卷曲相互作用稳定的可能性。 BsLon-N和BsLon-AP总共缺少36个氨基酸,无法提供全长Lon蛋白酶的完整图片。

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