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组氨酸标签介导的化学感受器二聚化导致功能性纳米阵列的组装。

His-Tag-Mediated Dimerization of Chemoreceptors Leads to Assembly of Functional Nanoarrays.

作者信息

Haglin Elizabeth R, Yang Wen, Briegel Ariane, Thompson Lynmarie K

机构信息

Department of Biology, Leiden University , 2333 Leiden, The Netherlands.

出版信息

Biochemistry. 2017 Nov 7;56(44):5874-5885. doi: 10.1021/acs.biochem.7b00698. Epub 2017 Sep 22.

Abstract

Transmembrane chemotaxis receptors are found in bacteria in extended hexagonal arrays stabilized by the membrane and by cytosolic binding partners, the kinase CheA and coupling protein CheW. Models of array architecture and assembly propose receptors cluster into trimers of dimers that associate with one CheA dimer and two CheW monomers to form the minimal "core unit" necessary for signal transduction. Reconstructing in vitro chemoreceptor ternary complexes that are homogeneous and functional and exhibit native architecture remains a challenge. Here we report that His-tag-mediated receptor dimerization with divalent metals is sufficient to drive assembly of nativelike functional arrays of a receptor cytoplasmic fragment. Our results indicate receptor dimerization initiates assembly and precedes formation of ternary complexes with partial kinase activity. Restoration of maximal kinase activity coincides with a shift to larger complexes, suggesting that kinase activity depends on interactions beyond the core unit. We hypothesize that achieving maximal activity requires building core units into hexagons and/or coalescing hexagons into the extended lattice. Overall, the minimally perturbing His-tag-mediated dimerization leads to assembly of chemoreceptor arrays with native architecture and thus serves as a powerful tool for studying the assembly and mechanism of this complex and other multiprotein complexes.

摘要

跨膜趋化受体存在于细菌中,以由膜和胞质结合伴侣(激酶CheA和偶联蛋白CheW)稳定的扩展六边形阵列形式存在。阵列结构和组装模型提出,受体聚集成二聚体的三聚体,这些三聚体与一个CheA二聚体和两个CheW单体结合,形成信号转导所需的最小“核心单元”。重建具有天然结构的均匀且功能性的体外化学感受器三元复合物仍然是一个挑战。在此,我们报告His标签介导的受体与二价金属的二聚化足以驱动受体细胞质片段的天然样功能阵列的组装。我们的结果表明,受体二聚化启动组装,并先于具有部分激酶活性的三元复合物的形成。最大激酶活性的恢复与向更大复合物的转变同时发生,这表明激酶活性取决于核心单元之外的相互作用。我们推测,实现最大活性需要将核心单元构建成六边形和/或将六边形聚合成扩展晶格。总体而言,最小干扰的His标签介导的二聚化导致具有天然结构的化学感受器阵列的组装,因此是研究该复合物和其他多蛋白复合物的组装及机制的有力工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1934/5678893/9d56760da1f5/bi-2017-00698z_0001.jpg

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