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Solution Structure of the Iron−Sulfur Cluster Cochaperone HscB and Its Binding Surface for the Iron−Sulfur Assembly Scaffold Protein IscU

机译:铁硫簇伴侣蛋白HscB的溶液结构及其对铁硫组装支架蛋白Isc的结合表面

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摘要

The interaction between IscU and HscB is critical for successful assembly of iron−sulfur clusters. NMR experiments were performed on HscB to investigate which of its residues might be part of the IscU binding surface. Residual dipolar couplings (1DHN and 1DCαHα) indicated that the crystal structure of HscB [Cupp-Vickery, J. R., and Vickery, L. E. (2000) Crystal structure of Hsc20, a J-type cochaperone from Escherichia coli, J. Mol. Biol. 304, 835−845] faithfully represents its solution state. NMR relaxation rates (15N R1, R2) and 1H−15N heteronuclear NOE values indicated that HscB is rigid along its entire backbone except for three short regions which exhibit flexibility on a fast time scale. Changes in the NMR spectrum of HscB upon addition of IscU mapped to the J-domain/C-domain interface, the interdomain linker, and the C-domain. Sequence conservation is low in the interface and in the linker, and NMR changes observed for these residues likely result from indirect effects of IscU binding. NMR changes observed in the conserved patch of residues in the C-domain (L92, M93, L96, E97, E100, E104, and F153) were suggestive of a direct interaction with IscU. To test this, we replaced several of these residues with alanine and assayed for the ability of HscB to interact with IscU and to stimulate HscA ATPase activity. HscB(L92A,M93A,F153A) and HscB(E97A,E100A,E104A) both showed decreased binding affinity for IscU; the (L92A,M93A,F153A) substitution also strongly perturbed the allosteric interaction within the HscA·IscU·HscB ternary complex. We propose that the conserved patch in the C-domain of HscB is the principal binding site for IscU.
机译:IscU和HscB之间的相互作用对于成功组装铁硫簇至关重要。在HscB上进行了NMR实验,以研究其哪些残基可能是IscU结合表面的一部分。残留的偶极耦合( 1 DHN和 1 DCαHα)表明HscB的晶体结构[Cupp-Vickery,JR和Vickery,LE(2000)Hsc20,来自大肠杆菌,J.Mol.J。的J-型伴侣蛋白。生物学[304,835−845]忠实地表示其解决状态。 NMR弛豫速率( 15 N R1,R2)和 1 H- 15 N杂核NOE值表明,HscB沿其整个骨架是刚性的,除了三个短区域在快速范围内表现出灵活性。添加了映射到J域/ C域界面,域间接头和C域的IscU后,HscB的NMR光谱变化。界面和接头中的序列保守性较低,观察到的这些残基的NMR变化可能是IscU结合的间接作用所致。在C结构域(L92,M93,L96,E97,E100,E104和F153)的保守残基补丁中观察到的NMR变化提示与IscU直接相互作用。为了测试这一点,我们用丙氨酸替换了其中一些残基,并测定了HscB与IscU相互作用并刺激HscA ATPase活性的能力。 HscB(L92A,M93A,F153A)和HscB(E97A,E100A,E104A)均显示对IscU的结合亲和力降低; (L92A,M93A,F153A)取代也强烈干扰了HscA·IscU·HscB三元复合物中的变构相互作用。我们建议HscB C域中的保守补丁是IscU的主要结合位点。

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