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大肠杆菌DnaJ伴侣蛋白J结构域和富含甘氨酸/苯丙氨酸区域的核磁共振结构

NMR structure of the J-domain and the Gly/Phe-rich region of the Escherichia coli DnaJ chaperone.

作者信息

Pellecchia M, Szyperski T, Wall D, Georgopoulos C, Wüthrich K

机构信息

Institut für Molekularbiolgie und Biophysik, Eidgenössische Technische, Zürich, Switzerland.

出版信息

J Mol Biol. 1996 Jul 12;260(2):236-50. doi: 10.1006/jmbi.1996.0395.

Abstract

The recombinant N-terminal 107-amino acid polypeptide fragment 2-108 of the DnaJ molecular chaperone of Escherichia coli, which contains the J-domain (residues 2 to 76) and the Gly/Phe-rich region (residues 77 to 108), was uniformly labeled with nitrogen-15 and carbon-13. The complete NMR solution structure of the J-domain was determined with the program DIANA on the basis of 682 nuclear Overhauser enhancement (NOE) upper distance limits and 180 dihedral angle constraints. It contains three well-defined helices comprising residues 6 to 10, 18 to 32 and 41 to 57, and a fourth helix, consisting of residues 61 to 68, which is well defined as a regular secondary structure but for which the location relative to the remainder of the molecule is not precisely determined. The helices II and III form an antiparallel helical coiled-coil. Helix I is approximately parallel to the plane defined by the helices II and III and runs from the carboxy-terminal end of the helix III to the center of helix II. Helix IV is positioned near the carboxy-terminal end of helix III and is on the same side of the coiled coil as helix I, but it is oriented approximately perpendicular to the plane of the helices II and III. This novel alpha-protein topology leads to formation of a hydrophobic core involving side-chains of all four helices. A strong correlation is seen between the extent of sequence-conservation of hydrophobic residues in the family of J-domain homologues, and the structural organization of the hydrophobic core in these proteins. The residues which have key roles for the specificity of the interaction of DnaJ-like proteins with their corresponding Hsp70 counterparts are located on the outer surfaces of the helices II and III, and in the loop connecting these two helices. Measurements of backbone amide proton exchange rates, 15N spin relaxation times and heteronuclear 15N {1H} NOEs provided additional insights into local conformational equilibria and internal rate processes in DnaJ(2-108). In the Gly/Phe-rich region, which is poorly ordered in the NMR solution structure and does not form a globular core, the polypeptide segment 90 to 103 differs from the segments 77 to 89 and 104 to 108 by reduced local flexibility. Considering that this same segment shows sequence conservation with corresponding segments in the Gly/Phe-rich regions of other DnaJ-like proteins, its reduced flexibility may be directly linked to the formation of the ternary DnaJ-DnaK-polypeptide complex.

摘要

大肠杆菌DnaJ分子伴侣的重组N端107个氨基酸的多肽片段2 - 108,包含J结构域(第2至76位氨基酸)和富含甘氨酸/苯丙氨酸的区域(第77至108位氨基酸),用氮 - 15和碳 - 13进行了均匀标记。基于682个核Overhauser效应(NOE)上限距离限制和180个二面角约束,使用DIANA程序确定了J结构域的完整NMR溶液结构。它包含三个明确的螺旋,分别由第6至10、18至32和41至57位氨基酸组成,以及第四个螺旋,由第61至68位氨基酸组成,该螺旋作为规则的二级结构定义明确,但相对于分子其余部分的位置尚未精确确定。螺旋II和III形成反平行螺旋卷曲螺旋。螺旋I大致平行于由螺旋II和III定义的平面,从螺旋III的羧基末端延伸至螺旋II的中心。螺旋IV位于螺旋III的羧基末端附近,与螺旋I在卷曲螺旋的同一侧,但它大致垂直于螺旋II和III的平面定向。这种新颖的α蛋白拓扑结构导致形成了一个涉及所有四个螺旋侧链的疏水核心。在J结构域同源物家族中,疏水残基的序列保守程度与这些蛋白质中疏水核心的结构组织之间存在很强的相关性。对于类DnaJ蛋白与其相应的Hsp70对应物相互作用的特异性起关键作用的残基位于螺旋II和III的外表面以及连接这两个螺旋的环中。对主链酰胺质子交换率、15N自旋弛豫时间和异核15N{1H}NOE的测量为DnaJ(2 - 108)中的局部构象平衡和内部速率过程提供了更多见解。在富含甘氨酸/苯丙氨酸的区域,其在NMR溶液结构中无序且未形成球状核心,多肽片段90至103与片段77至89和104至108相比,局部灵活性降低。考虑到该相同片段与其他类DnaJ蛋白富含甘氨酸/苯丙氨酸区域中的相应片段显示出序列保守性,其降低的灵活性可能与三元DnaJ - DnaK - 多肽复合物的形成直接相关。

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