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基于小角中子散射的GroEL及其与硫氰酸酶复合物的溶液结构

Solution structures of GroEL and its complex with rhodanese from small-angle neutron scattering.

作者信息

Thiyagarajan P, Henderson S J, Joachimiak A

机构信息

Argonne National Laboratory, IL 60439, USA.

出版信息

Structure. 1996 Jan 15;4(1):79-88. doi: 10.1016/s0969-2126(96)00011-1.

Abstract

BACKGROUND

Molecular chaperonins 60 are cylindrical oligomeric complexes which bind to unfolded proteins and assist in their folding. Studies to identify the location of the protein substrate have produced contradictory results: some suggest that the substrate-binding site is buried within the interior of the complex, whereas others indicate an external (polar) location.

RESULTS

Small-angle neutron scattering (SANS) measurements were made on GroEL chaperonin and on a complex of GroEL with rhodanese. The radius of gyration and the molecular weight determined from SANS measurements of GroEL agree well with those from its crystal structure. The positions of residues which were unresolved in the crystal structure have been confirmed. In addition, through model fitting of the SANS data, conformational changes in solution have been assessed and the location of bound rhodanese has been determined.

CONCLUSIONS

The overall structure of GroEL in solution is similar to the crystal structure. In GroEL the N-terminal and C-terminal residues are organized compactly near the equator of the cylinder and the apical domains are flared by about 5 degrees. The best fit of SANS data suggests the existence of an equilibrium between the complex and single rings and monomers. SANS data for the GroEL-rhodanese complex are consistent with a model wherein one rhodanese molecule binds across the opening to the chaperonin cavity, rather than within it.

摘要

背景

分子伴侣蛋白60是圆柱形寡聚复合物,它与未折叠的蛋白质结合并协助其折叠。确定蛋白质底物位置的研究产生了相互矛盾的结果:一些研究表明底物结合位点位于复合物内部,而另一些研究则表明其位于外部(极性)位置。

结果

对GroEL伴侣蛋白以及GroEL与硫氰酸酶的复合物进行了小角中子散射(SANS)测量。通过SANS测量确定的GroEL的回转半径和分子量与其晶体结构中的结果非常吻合。晶体结构中未解析的残基位置已得到证实。此外,通过对SANS数据的模型拟合,评估了溶液中的构象变化并确定了结合的硫氰酸酶的位置。

结论

溶液中GroEL的整体结构与晶体结构相似。在GroEL中,N端和C端残基在圆柱体赤道附近紧密排列,顶端结构域向外扩张约5度。SANS数据的最佳拟合表明复合物与单环和单体之间存在平衡。GroEL-硫氰酸酶复合物的SANS数据与一个模型一致,即一个硫氰酸酶分子跨开口结合到伴侣蛋白腔,而不是在腔内。

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