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首页> 外文期刊>Biochemistry >The Specialized Hsp70 (HscA) Interdomain Linker Binds to Its Nucleotide-Binding Domain and Stimulates ATP Hydrolysis in Both cis and trans Configurations
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The Specialized Hsp70 (HscA) Interdomain Linker Binds to Its Nucleotide-Binding Domain and Stimulates ATP Hydrolysis in Both cis and trans Configurations

机译:专门的Hsp70(HscA)域间连接器绑定到其核苷酸结合域,并以顺式和反式两种构型刺激ATP水解

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Proteins from the isc operon of Escherichia coli constitute the machinery used to synthesize ironsulfur (FeS) clusters for delivery to recipient apoproteins. Efficient and rapid [2Fe-2S] cluster transfer from the holo-scaffold protein IscU depends on ATP hydrolysis in the nucleotide-binding domain (NBD) of HscA, a specialized Hsp70-type molecular chaperone with low intrinsic ATPase activity (0.02 min(-1) at 25 degrees C, henceforth reported in units of min(-1)). HscB, an Hsp40-type cochaperone, binds to HscA and stimulates ATP hydrolysis to promote cluster transfer; however, while the interactions between HscA and HscB have been investigated, the role of HscAs interdomain linker in modulating ATPase activity has not been explored. To address this issue, we created three variants of the 40 kDa NBD of HscA: NBD alone (HscA(386)), NBD with a partial linker (HscA(389)), and NBD with the full linker (HscA(395)). We found that the rate of ATP hydrolysis of HscA(395) (0.45 min1) is nearly 15-fold higher than that of HscA(386) (0.035 min1), although their apparent affinities for ATP are equivalent. HscA(395), which contains the full covalently linked linker peptide, exhibited intrinsic tryptophan fluorescence and basal thermostability that were higher than those of HscA(386). Furthermore, HscA(395) displayed narrower 1HN line widths in its two-dimensional 1H15N TROSY-HSQC spectrum in comparison to HscA(386), indicating that the peptide in the cis configuration binds to and stabilizes the NBD. The addition to HscA(386) of a synthetic peptide with a sequence identical to that of the interdomain linker (L387LLDVIPLS395) stimulated its ATPase activity and induced widespread NMR chemical shift perturbations indicative of a binding interaction in the trans configuration.
机译:大肠杆菌isc操纵子的蛋白质构成了用于合成铁硫(FeS)簇以递送至受体载脂蛋白的机制。从完整支架蛋白IscU高效快速转移[2Fe-2S]簇取决于HscA核苷酸结合域(NBD)中的ATP水解,HscA是一种特殊的Hsp70型分子伴侣,具有较低的固有ATPase活性(0.02 min(- 1)在25摄氏度下,此后以min(-1)单位报告。 HscB,一种Hsp40型伴侣分子,与HscA结合并刺激ATP水解以促进簇转移。但是,尽管已经研究了HscA和HscB之间的相互作用,但尚未探索HscA域间接头在调节ATPase活性中的作用。为了解决此问题,我们创建了HscA 40 kDa NBD的三个变体:单独的NBD(HscA(386)),带有部分接头的NBD(HscA(389))和带有完整接头的NBD(HscA(395))。 。我们发现HscA(395)(0.45 min1)的ATP水解速率比HscA(386)(0.035 min1)的ATP水解速率高将近15倍,尽管它们对ATP的表观亲和力是相同的。 HscA(395)包含完整的共价连接的接头肽,表现出固有的色氨酸荧光和基础热稳定性,高于HscA(386)。此外,与HscA(386)相比,HscA(395)在其二维1H15N TROSY-HSQC光谱中显示出更窄的1HN线宽,表明顺式构型的肽结合并稳定了NBD。向HscA(386)中添加具有与域间连接子(L387LLDVIPLS395)相同的序列的合成肽会刺激其ATPase活性,并引起广泛的NMR化学位移扰动,表明反式构型的结合相互作用。

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