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GroEL和GroEL/GroES复合物与一种非天然枯草杆菌蛋白酶变体的相互作用:小角中子散射研究。

Interaction of GroEL and GroEL/GroES complexes with a nonnative subtilisin variant: a small-angle neutron scattering study.

作者信息

Krueger Susan, Gregurick Susan K, Zondlo James, Eisenstein Edward

机构信息

NIST Center for Neutron Research, National Institute of Standards and Technology, 100 Bureau Drive, Stop 8562, Bldg. 235/Room E151, Gaithersburg, MD 20899-8562, USA.

出版信息

J Struct Biol. 2003 Mar;141(3):240-58. doi: 10.1016/s1047-8477(03)00002-9.

Abstract

Small-angle neutron scattering and contrast variation were used to study the solution structure of GroEL and GroEL/GroES chaperonins complexed with a nonnative variant of the polypeptide substrate, subtilisin (PJ9). The subtilisin was 86% deuterated (dPJ9) so that it contrasted sufficiently with the chaperonin, allowing the contrast variation technique to be used to separate the scattering from the two components bound in the complex. Both the native double-ring GroEL and a single-ring mutant were used with dPJ9 bound in a 1:1 stoichiometry per GroEL toroid. This allowed both the position and the shape of dPJ9 in the GroEL/dPJ9 complexes to be determined. A single-ring GroEL/GroES variant complexed with one dPJ9 molecule was used to study the structural changes of dPJ9 in GroEL/GroES/dPJ9 complexes formed with ADP and with ATP. It was found that both the shape and the position of the bound dPJ9 in the GroEL/GroES/dPJ9 complex with ADP were the same as those in the GroEL/dPJ9 complex. However, dPJ9 assumed a more symmetric shape when bound in the GroEL/GroES/dPJ9 complex with ATP. This important observation reflects the relative ability of ATP to promote refolding of protein substrates relative to that of ADP.

摘要

小角中子散射和对比变化技术被用于研究与多肽底物枯草杆菌蛋白酶(PJ9)的非天然变体复合的GroEL和GroEL/GroES伴侣蛋白复合物的溶液结构。枯草杆菌蛋白酶进行了86%的氘代(dPJ9),使其与伴侣蛋白有足够的对比度,从而能够使用对比变化技术来分离复合物中两种结合成分的散射。天然的双环GroEL和单环突变体都与dPJ9以每个GroEL环面1:1的化学计量比结合。这使得能够确定dPJ9在GroEL/dPJ9复合物中的位置和形状。一个与一个dPJ9分子复合的单环GroEL/GroES变体被用于研究在由ADP和ATP形成的GroEL/GroES/dPJ9复合物中dPJ9的结构变化。结果发现,在含有ADP的GroEL/GroES/dPJ9复合物中,结合的dPJ9的形状和位置与GroEL/dPJ9复合物中的相同。然而,当dPJ9与含有ATP的GroEL/GroES/dPJ9复合物结合时呈现出更对称的形状。这一重要观察结果反映了ATP相对于ADP促进蛋白质底物重折叠的相对能力。

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