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首页> 外文期刊>Journal of Molecular Biology >Three-dimensional domain swapping in nitrollin, a single-domain betagamma-crystallin from Nitrosospira multiformis, controls protein conformation and stability but not dimerization.
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Three-dimensional domain swapping in nitrollin, a single-domain betagamma-crystallin from Nitrosospira multiformis, controls protein conformation and stability but not dimerization.

机译:硝唑林(来自Nitrosospira multiformis的一个单域贝塔伽玛晶体蛋白)中的三维域交换控制蛋白质构象和稳定性,但不控制二聚化。

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摘要

The betagamma-crystallin superfamily has a well-characterized protein fold, with several members found in both prokaryotic and eukaryotic worlds. A majority of them contain two betagamma-crystallin domains. A few examples, such as ciona crystallin and spherulin 3a exist that represent the eukaryotic single-domain proteins of this superfamily. This study reports the high-resolution crystal structure of a single-domain betagamma-crystallin protein, nitrollin, from the ammonium-oxidizing soil bacterium Nitrosospira multiformis. The structure retains the characteristic betagamma-crystallin fold despite a very low sequence identity. The protein exhibits a unique case of homodimerization in betagamma-crystallins by employing its N-terminal extension to undergo three-dimensional (3D) domain swapping with its partner. Removal of the swapped strand results in partial loss of structure and stability but not dimerization per se as determined using gel filtration and equilibrium unfolding studies. Overall, nitrollin represents a distinct single-domain prokaryotic member that has evolved a specialized mode of dimerization hitherto unknown in the realm of betagamma-crystallins.
机译:betagamma-crystallin超家族具有良好的蛋白质折叠特性,在原核和真核世界中都发现了一些成员。它们中的大多数包含两个betagamma-crystallin域。存在一些例子,例如ciona crystallin和spherulin 3a,它们代表了这个超家族的真核单域蛋白。这项研究报告了来自铵氧化性土壤细菌多形硝化螺菌的单域betagamma-crystallin蛋白硝化蛋白的高分辨率晶体结构。尽管序列同一性很低,该结构仍保留了betagamma-crystallin特征折叠。该蛋白质通过利用其N末端延伸与其伴侣进行三维(3D)域交换,在betagamma-crystallins中展现出独特的均二聚化情况。如使用凝胶过滤和平衡展开研究所确定的,交换掉的链的去除导致结构和稳定性的部分损失,而不是本身的二聚化。总的来说,硝唑林代表了独特的单域原核生物成员,该分子已经进化出一种特殊的二聚化模式,这在贝他伽玛晶体蛋白领域是迄今未知的。

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