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果蝇隔膜连接的不仅仅是屏障功能:文献综述、SJ 相关蛋白人类同源物的预测以及蛋白结构域家族的鉴定。

The Drosophila septate junctions beyond barrier function: Review of the literature, prediction of human orthologs of the SJ-related proteins and identification of protein domain families.

机构信息

Department of Physiology, Faculty of Medicine, School of Health Sciences, University of Thessaly, BIOPOLIS, Larissa, Greece.

Department of Evolutionary Biology and Environmental Studies, University of Zurich, Zurich, Switzerland.

出版信息

Acta Physiol (Oxf). 2021 Jan;231(1):e13527. doi: 10.1111/apha.13527. Epub 2020 Aug 5.

Abstract

The involvement of Septate Junctions (SJs) in critical cellular functions that extend beyond their role as diffusion barriers in the epithelia and the nervous system has made the fruit fly an ideal model for the study of human diseases associated with impaired Tight Junction (TJ) function. In this study, we summarized current knowledge of the Drosophila melanogaster SJ-related proteins, focusing on their unconventional functions. Additionally, we sought to identify human orthologs of the corresponding genes as well as protein domain families. The systematic literature search was performed in PubMed and Scopus databases using relevant key terms. Orthologs were predicted using the DIOPT tool and aligned protein regions were determined from the Pfam database. 3-D models of the smooth SJ proteins were built on the Phyre2 and DMPFold protein structure prediction servers. A total of 30 proteins were identified as relatives to the SJ cellular structure. Key roles of these proteins, mainly in the regulation of morphogenetic events and cellular signalling, were highlighted. The investigation of protein domain families revealed that the SJ-related proteins contain conserved domains that are required not only for cell-cell interactions and cell polarity but also for cellular signalling and immunity. DIOPT analysis of orthologs identified novel human genes as putative functional homologs of the fruit fly SJ genes. A gap in our knowledge was identified regarding the domains that occur in the proteins encoded by eight SJ-associated genes. Future investigation of these domains is needed to provide functional information.

摘要

参与有丝分裂后间隔(SJ)的关键细胞功能不仅限于其作为上皮和神经系统扩散屏障的作用,这使得果蝇成为研究与紧密连接(TJ)功能障碍相关的人类疾病的理想模型。在这项研究中,我们总结了果蝇 SJ 相关蛋白的现有知识,重点介绍了它们的非常规功能。此外,我们还试图确定相应基因的人类直系同源物以及蛋白结构域家族。使用相关的关键词在 PubMed 和 Scopus 数据库中进行了系统的文献检索。使用 DIOPT 工具预测直系同源物,并从 Pfam 数据库确定对齐的蛋白区域。使用 Phyre2 和 DMPFold 蛋白结构预测服务器构建了光滑 SJ 蛋白的 3D 模型。共鉴定出 30 种蛋白与 SJ 细胞结构有关。强调了这些蛋白的主要作用,主要是在形态发生事件和细胞信号转导中的调节作用。对蛋白结构域家族的研究表明,SJ 相关蛋白包含保守结构域,这些结构域不仅是细胞-细胞相互作用和细胞极性所必需的,而且也是细胞信号转导和免疫所必需的。DIOPT 分析直系同源物确定了人类新基因,这些基因可能是果蝇 SJ 基因的功能性同源物。我们发现,在由八个与 SJ 相关的基因编码的蛋白中存在一些结构域的知识空白。需要进一步研究这些结构域,以提供功能信息。

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