首页> 外文期刊>Journal of molecular graphics & modelling >Deciphering the three-domain architecture in schlafens and the structures and roles of human schlafenl2 and serpinBl2 in transcriptional regulation
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Deciphering the three-domain architecture in schlafens and the structures and roles of human schlafenl2 and serpinBl2 in transcriptional regulation

机译:在转录调节中解读Schlafens中的三个域架构以及人Schlafenl2和Serpinbl2的结构和角色

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Schlafen proteins are important in cell differentiation and defense against viruses, and yet this family of vertebrate proteins is just beginning to be understood at the molecular level. Here, the three-dimensional architecture and molecular interfaces of human schlafenl2 (hSLFN12), which promotes intestinal stem cell differentiation, are analyzed by sequence conservation and structural modeling in light of the functions of its homologs and binding partners. Our analysis shows that the schlafen or divergent AAA ATPase domain described in the N-terminal region of schlafens in databases and the literature is a misannotation. This N-terminal region is conclusively an AlbA_2 DNA/RNA binding domain, forming the conserved core of schlafens and their sequence homologs from bacteria through mammals. Group III schlafens additionally contain a AAA NTPase domain in their C-terminal helicase region. In hSLFN12, we have uncovered a domain matching rho GTPases, which directly follows the AlbA_2 domain in all group II-III schlafens. Potential roles for the GTPase-like domain include antiviral activity and cytoskeletal interactions that contribute to nucleocytoplasmic shuttling and cell polarization during differentiation. Based on features conserved with rSlfn13, the AlbA_2 region in hSLFN12 is likely to bind RNA, possibly as a ribonuclease. We hypothesize that RNA binding by hSLFN12 contributes to an RNA-induced transcriptional silencing/E3 ligase complex, given the functions of hSLFN12's partners, SUV39H1, JMJD6, and PDLIM7. hSLFN12's partner hSerpinB12 may contribute to heterochromatin formation, based on its homology to MENT, or directly regulate transcription via its binding to RNA polymerase II. The analysis presented here provides clear architectural and transcriptional regulation hypotheses to guide experimental design for hSLFN12 and the thousands of schlafens that share its motifs. (C) 2019 Elsevier Inc. All rights reserved.
机译:Schlafen蛋白质在细胞分化和防御病毒中是重要的,然而,这种脊椎动物蛋白质似乎在分子水平开始理解。这里,通过其同源物和结合伙伴的功能,通过序列保守和结构建模分析人SchlafeN12(HSLFN12)的三维架构和分子界面,其促进肠道干细胞分化。我们的分析表明,数据库中Schlafens的N-末端区域中描述的Schlafen或发散AAA ATPase结构域是一种误操作。该N-末端区域是最终的,可结实是Alba_2 DNA / RNA结合结构域,形成Schlafens的保守核心,并通过哺乳动物从细菌中形成序列同源物。第III组Schlafens还含有其C末端螺旋酶区域中的AAA NTPAse结构域。在HSLFN12中,我们发现了一个域匹配的RHO GTP酶,它直接遵循所有组II-III Schlafens中的Alba_2域。 GTPAse样域的潜在作用包括抗病毒活性和细胞骨架相互作用,其有助于在分化期间有助于核细胞质梭子和细胞偏振。基于用RSLFN13保守的特征,HSLFN12中的Alba_2区域可能会结合RNA,可能是核糖核酸酶。考虑到HSLFN12合作伙伴,SUV39H1,JMJD6和PDLIM7的功能,HSLFN12的RNA结合有助于HSLFN12的RNA结合有助于RNA诱导的转录沉默/ E3连接酶复合物。 HSLFN12的合作伙伴HserpinB12可以基于其与术语的同源性有助于形成异铬胺形成,或者通过其与RNA聚合酶II的结合直接调节转录。这里提出的分析提供了明确的建筑和转录调节假设,以指导HSLFN12的实验设计和分享其图案的数以千计的Schlafens。 (c)2019 Elsevier Inc.保留所有权利。

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