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小角 X 射线散射研究 Rex 家族阻遏物:溶液中 NADH 和 NAD+结合的构象响应。

Small-angle X-ray scattering study of a Rex family repressor: conformational response to NADH and NAD+ binding in solution.

机构信息

Department of Biochemistry and Structural Biology, Lund University, SE-22100 Lund, Sweden.

出版信息

J Mol Biol. 2011 May 13;408(4):670-83. doi: 10.1016/j.jmb.2011.02.050. Epub 2011 Mar 21.

DOI:10.1016/j.jmb.2011.02.050
PMID:21402078
Abstract

The transcriptional repressor Rex is a sensor of the intracellular NADH/NAD(+) redox state through direct binding of NADH or NAD(+). Homodimeric Rex protein from Thermus aquaticus (T-Rex) and Bacillus subtilis (B-Rex) exists in several different conformations. In both organisms, Rex in complex with NADH has the DNA binding domains packed together at the dimer interface, whereas in the apo form of B-Rex the linkers connecting these domains to the core are flexible. The crystal structures of the apo forms of B-Rex and a mutated variant of T-Rex are radically different. We describe the solution structures of B-Rex in complex with NAD(+) or NADH and in its apo form, on the basis of small-angle X-ray scattering (SAXS) measurements. This study addresses to what extent the unusual orientation of the DNA recognition domains of the crystal structure of apo B-Rex is due to stabilization by crystal packing. Low-resolution ab initio solution structures were obtained for apo B-Rex, B-Rex:NADH and B-Rex:NAD(+). Models giving a more detailed picture of these three solution structures were obtained also by rigid body fitting of the crystallographic domains. The SAXS data confirm the elongated and flexible nature of apo-B-Rex and the existence of two distinct and more rigid conformations for the complexes with NADH and NAD(+). The models emerging from this study indicate a reaction mechanism for B-Rex in which the recognition domains are rotated upon binding to NADH.

摘要

转录抑制剂 Rex 可通过直接结合 NADH 或 NAD+来感应细胞内 NADH/NAD+氧化还原状态。水生栖热菌(T-Rex)和枯草芽孢杆菌(B-Rex)的同源二聚体 Rex 蛋白存在几种不同的构象。在这两种生物体中,与 NADH 结合的 Rex 蛋白的 DNA 结合结构域在二聚体界面上紧密结合,而在无配体的 B-Rex 中,将这些结构域连接到核心的连接子是灵活的。B-Rex 和突变型 T-Rex 的无配体形式的晶体结构差异很大。我们基于小角 X 射线散射(SAXS)测量,描述了 B-Rex 与 NAD+或 NADH 结合的形式以及无配体形式的溶液结构。这项研究探讨了晶体结构中无配体 B-Rex 中 DNA 识别结构域的异常取向在多大程度上是由于晶体堆积而稳定的。我们获得了无配体 B-Rex、B-Rex:NADH 和 B-Rex:NAD+的低分辨率从头计算溶液结构。我们还通过晶体结构域的刚性体拟合获得了这三种溶液结构的更详细模型。SAXS 数据证实了无配体 B-Rex 的细长和灵活性质,以及与 NADH 和 NAD+复合物存在两种独特且更刚性的构象。这项研究提出的模型表明了 B-Rex 的反应机制,其中在与 NADH 结合时,识别结构域发生旋转。

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