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探索与小核糖体亚基相关的韦尔斯-道森簇。

Exploring Wells-Dawson Clusters Associated With the Small Ribosomal Subunit.

作者信息

Crans Debbie C, Sánchez-Lombardo Irma, McLauchlan Craig C

机构信息

Department Chemistry and the Cell and Molecular Biology Program, Colorado State University, Fort Collins, CO, United States.

División Académica de Ciencias Básicas, Universidad Juárez Autónoma de Tabasco, Cunduacán, Mexico.

出版信息

Front Chem. 2019 Jul 5;7:462. doi: 10.3389/fchem.2019.00462. eCollection 2019.

Abstract

The polyoxometalate PW , the Wells-Dawson cluster, stabilized the ribosome sufficiently for the crystallographers to solve the phase problem and improve the structural resolution. In the following we characterize the interaction of the Wells-Dawson cluster with the ribosome small subunit. There are 14 different PW clusters interacting with the ribosome, and the types of interactions range from one simple residue interaction to complex association of multiple sites including backbone interactions with a Wells-Dawson cluster. Although well-documented that bridging oxygen atoms are the main basic sites on other polyoxometalate interaction with most proteins reported, the W=O groups are the main sites of the Wells-Dawson cluster interacting with the ribosome. Furthermore, the peptide chain backbone on the ribosome host constitutes the main sites that associate with the Wells-Dawson cluster. In this work we investigate the potential of one representative pair of closely-located Wells-Dawson clusters being a genuine Double Wells-Dawson cluster. We found that the Double Wells-Dawson structure on the ribosome is geometrically sound and in line with other Double Wells-Dawson clusters previously observed in the solid state and solution. This information suggests that the Double Wells-Dawson structure on the ribosome is real and contribute to characterization of this particular structure of the ribosome.

摘要

多金属氧酸盐PW(韦尔斯-道森簇)使核糖体足够稳定,以便晶体学家解决相位问题并提高结构分辨率。在接下来的内容中,我们将描述韦尔斯-道森簇与核糖体小亚基的相互作用。有14种不同的PW簇与核糖体相互作用,相互作用的类型从一个简单的残基相互作用到包括与韦尔斯-道森簇的主链相互作用在内的多个位点的复杂缔合。尽管有充分的文献记载,在大多数已报道的与其他多金属氧酸盐相互作用中,桥连氧原子是主要的碱性位点,但W=O基团是韦尔斯-道森簇与核糖体相互作用的主要位点。此外,核糖体主体上的肽链主链构成了与韦尔斯-道森簇缔合的主要位点。在这项工作中,我们研究了一对代表性的紧密相邻的韦尔斯-道森簇成为真正的双韦尔斯-道森簇的可能性。我们发现核糖体上的双韦尔斯-道森结构在几何上是合理的,并且与先前在固态和溶液中观察到的其他双韦尔斯-道森簇一致。这一信息表明核糖体上的双韦尔斯-道森结构是真实的,并有助于对核糖体这一特殊结构进行表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a011/6624422/708eece63045/fchem-07-00462-g0001.jpg

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