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铁硫模板蛋白IscU的LPPVK基序与Hsc66-Hsc20伴侣系统相互作用的贡献。

Contributions of the LPPVK motif of the iron-sulfur template protein IscU to interactions with the Hsc66-Hsc20 chaperone system.

作者信息

Hoff Kevin G, Cupp-Vickery Jill R, Vickery Larry E

机构信息

Department of Physiology and Biophysics, University of California, Irvine, California 92697, USA.

出版信息

J Biol Chem. 2003 Sep 26;278(39):37582-9. doi: 10.1074/jbc.M305292200. Epub 2003 Jul 17.

Abstract

Hsc66 (HscA) and Hsc20 (HscB) from Escherichia coli comprise a specialized chaperone system that selectively binds the iron-sulfur cluster template protein IscU. Hsc66 interacts with peptides corresponding to a discrete region of IscU including residues 99-103 (LPPVK), and a peptide containing residues 98-106 stimulates Hsc66 ATPase activity in a manner similar to IscU. To determine the relative contributions of individual residues in the LPPVK motif to Hsc66 binding and regulation, we have carried out an alanine mutagenesis scan of this motif in the Glu98-Cys106 peptide and the IscU protein. Alanine substitutions in the Glu98-Cys106 peptide resulted in decreased ATPase stimulation (2-10-fold) because of reduced binding affinity, with peptide(P101A) eliciting <10% of the parent peptide stimulation. Alanine substitutions in the IscU protein also revealed lower activities resulting from decreased apparent binding affinity, with the greatest changes in Km observed for the Pro101 (77-fold), Val102 (4-fold), and Lys103 (15-fold) mutants. Calorimetric studies of the binding of IscU mutants to the Hsc66.ADP complex showed that the P101A and K103A mutants also exhibit decreased binding affinity for the ADP-bound state. When ATPase stimulatory activity was assayed in the presence of the co-chaperone Hsc20, each of the mutants displayed enhanced binding affinity, but the P101A and V102A mutants exhibited decreased ability to maximally simulate Hsc66 ATPase. A charge mutant containing the motif sequence of NifU, IscU(V102E), did not bind the ATP or ADP states of Hsc66 but did bind Hsc20 and weakly stimulated Hsc66 ATPase in the presence of the co-chaperone. These results indicate that residues in the LPPVK motif are important for IscU interactions with Hsc66 but not for the ability of Hsc20 to target IscU to Hsc66. The results are discussed in the context of a structural model based on the crystallographic structure of the DnaK peptide-binding domain.

摘要

来自大肠杆菌的Hsc66(HscA)和Hsc20(HscB)构成了一个专门的伴侣系统,该系统选择性地结合铁硫簇模板蛋白IscU。Hsc66与对应于IscU离散区域(包括99 - 103位残基(LPPVK))的肽段相互作用,并且包含98 - 106位残基的肽段以类似于IscU的方式刺激Hsc66的ATP酶活性。为了确定LPPVK基序中各个残基对Hsc66结合和调节的相对贡献,我们对Glu98 - Cys106肽段和IscU蛋白中的该基序进行了丙氨酸诱变扫描。Glu98 - Cys106肽段中的丙氨酸取代由于结合亲和力降低导致ATP酶刺激作用下降(2 - 10倍),肽段(P101A)引发的刺激作用不到亲本肽段的10%。IscU蛋白中的丙氨酸取代也显示出由于表观结合亲和力降低导致活性降低,Pro101(77倍)、Val102(4倍)和Lys103(15倍)突变体的Km变化最大。对IscU突变体与Hsc66·ADP复合物结合的量热研究表明,P101A和K103A突变体对ADP结合状态的结合亲和力也降低。当在共伴侣Hsc20存在下测定ATP酶刺激活性时,每个突变体都表现出增强的结合亲和力,但P101A和V102A突变体最大程度模拟Hsc66 ATP酶的能力降低。一个含有NifU基序序列的电荷突变体IscU(V102E)不结合Hsc66的ATP或ADP状态,但结合Hsc20,并在共伴侣存在下微弱刺激Hsc66 ATP酶。这些结果表明,LPPVK基序中的残基对于IscU与Hsc66的相互作用很重要,但对于Hsc20将IscU靶向Hsc66的能力并不重要。在基于DnaK肽结合结构域晶体结构的结构模型背景下讨论了这些结果。

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