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古菌运动抑制模块 ArnA-ArnB 的结构和相互作用,该模块调节. 中的菌毛基因表达。

Structure and interactions of the archaeal motility repression module ArnA-ArnB that modulates archaellum gene expression in .

机构信息

From the Institute for Biology II, Molecular Biology of Archaea and.

the Philipps University, Department of Chemistry, 35032 Marburg, Germany.

出版信息

J Biol Chem. 2019 May 3;294(18):7460-7471. doi: 10.1074/jbc.RA119.007709. Epub 2019 Mar 22.

Abstract

Phosphorylation-dependent interactions play crucial regulatory roles in all domains of life. Forkhead-associated (FHA) and von Willebrand type A (vWA) domains are involved in several phosphorylation-dependent processes of multiprotein complex assemblies. Although well-studied in eukaryotes and bacteria, the structural and functional contexts of these domains are not yet understood in Archaea. Here, we report the structural base for such an interacting pair of FHA and vWA domain-containing proteins, ArnA and ArnB, in the thermoacidophilic archaeon , where they act synergistically and negatively modulate motility. The structure of the FHA domain of ArnA at 1.75 Å resolution revealed that it belongs to the subclass of FHA domains, which recognizes double-pSer/pThr motifs. We also solved the 1.5 Å resolution crystal structure of the ArnB paralog vWA2, disclosing a complex topology comprising the vWA domain, a β-sandwich fold, and a C-terminal helix bundle. We further show that ArnA binds to the C terminus of ArnB, which harbors all the phosphorylation sites identified to date and is important for the function of ArnB in archaellum regulation. We also observed that expression levels of the archaellum components in response to changes in nutrient conditions are independent of changes in ArnA and ArnB levels and that a strong interaction between ArnA and ArnB observed during growth on rich medium sequentially diminishes after nutrient limitation. In summary, our findings unravel the structural features in ArnA and ArnB important for their interaction and functional archaellum expression and reveal how nutrient conditions affect this interaction.

摘要

磷酸化依赖性相互作用在所有生命领域中发挥着关键的调节作用。Forkhead 相关(FHA)和 von Willebrand 类型 A(vWA)结构域参与了多蛋白复合物组装的几个磷酸化依赖性过程。尽管在真核生物和细菌中得到了很好的研究,但这些结构域在古菌中的结构和功能背景尚不清楚。在这里,我们报告了嗜热嗜酸古菌中 FHA 和 vWA 结构域包含蛋白 ArnA 和 ArnB 相互作用对的结构基础,它们协同作用并负调控运动性。ArnA 的 FHA 结构域在 1.75 Å分辨率下的结构表明,它属于 FHA 结构域的亚类,该亚类识别双 pSer/pThr 基序。我们还解决了 1.5 Å分辨率的 ArnB 同源物 vWA2 的晶体结构,揭示了一个复杂的拓扑结构,包括 vWA 结构域、β-夹心折叠和 C 端螺旋束。我们进一步表明,ArnA 与 ArnB 的 C 端结合,ArnB 的 C 端含有迄今为止鉴定的所有磷酸化位点,并且对 ArnB 在菌毛调节中的功能很重要。我们还观察到,在营养条件变化时,菌毛成分的表达水平与 ArnA 和 ArnB 水平的变化无关,并且在富营养培养基中观察到的 ArnA 和 ArnB 之间的强相互作用在营养限制后依次减弱。总之,我们的研究结果揭示了 ArnA 和 ArnB 中对其相互作用和功能菌毛表达很重要的结构特征,并揭示了营养条件如何影响这种相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f64/6509490/bd1ce99f4547/zbc0201905370001.jpg

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