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首页> 外文期刊>Journal of Molecular Biology >Structure of a hyperthermophilic archaeal homing endonuclease, I-Tsp061I: Contribution of cross-domain polar networks to thermostability
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Structure of a hyperthermophilic archaeal homing endonuclease, I-Tsp061I: Contribution of cross-domain polar networks to thermostability

机译:嗜热古细菌归巢核酸内切酶I-Tsp061I的结构:跨域极性网络对热稳定性的贡献

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摘要

A novel LAGLIDADG-type homing endonuclease (HEase), I-TspO61I, from the hyperthermophilic archaeon Thermoproteus sp. IC-061 16 S rRNA gene (rDNA) intron was characterized with respect to its structure, catalytic properties and thermostability. It was found that I-Tsp061I is a HEase isoschizomer of the previously described I-PogI and exhibits the highest thermostability among the known LAGLIDADG-type HEases. Determination of the crystal structure of I-Tsp061I at 2.1 A resolution using the multiple isomorphous replacement and anomalous scattering method revealed that the overall fold is similar to that of other known LAGLIDADG-type HEases, despite little sequence similarity between I-TspO61I and those HEases. However, I-Tsp061I contains important cross-domain polar networks, unlike its mesophilic counterparts. Notably, the polar network Tyr6-Asp104-His180-107O-HOH12-104O-Asn177 exists across the two packed a-helices containing both the LAGLIDADG catalytic motif and the GxxxG hydrophobic helix bundle motif. Another important structural feature is the salt-bridge network Asp29-Arg31-GIu182 across N and C-terminal domain interface, which appears to contribute to the stability of the domain/domain packing. On the basis of these structural analyses and extensive mutational studies, we conclude that such cross-domain polar networks play key roles in stabilizing the catalytic center and domain packing, and underlie the hyperthermostability of T-Tsp061I. (c) 2006 Published by Elsevier Ltd.
机译:来自嗜热古生菌Thermoproteus sp。的新型LAGLIDADG型归巢核酸内切酶(HEase)I-TspO61I。对IC-061 16 S rRNA基因(rDNA)内含子的结构,催化性能和热稳定性进行了表征。发现I-Tsp061I是先前描述的I-PogI的HEase同质异构体,并且在已知的LAGLIDADG型HEase中表现出最高的热稳定性。使用多重同晶置换和异常散射方法在2.1 A分辨率下确定I-Tsp061I的晶体结构,尽管I-TspO61I与这些HEase之间的序列相似性很小,但其总体折叠与其他已知的LAGLIDADG型HEase相似。 。但是,I-Tsp061I包含重要的跨域极性网络,这与中温对应物不同。值得注意的是,极性网络Tyr6-Asp104-His180-107O-HOH12-104O-Asn177存在于两个堆积的既包含LAGLIDADG催化基序又包含GxxxG疏水螺旋束基序的a螺旋中。另一个重要的结构特征是跨N和C端域接口的盐桥网络Asp29-Arg31-Glu182,这似乎有助于域/域包装的稳定性。在这些结构分析和广泛的突变研究的基础上,我们得出结论,这种跨域极性网络在稳定催化中心和域堆积中起着关键作用,并且是T-Tsp061I的超热稳定性的基础。 (c)2006年由Elsevier Ltd.发布。

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