对尾丝虫七肽的结构洞察:复合物提示了一种核苷酸依赖性界面交叉对话机制。

IF 4.7 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Deborah C. Mendonça , Sinara T.B. Morais , Heloísa Ciol , Andressa P.A. Pinto , Diego A. Leonardo , Humberto D’Muniz Pereira , Napoleão F. Valadares , Rodrigo V. Portugal , Bruno P. Klaholz , Richard C. Garratt , Ana P.U. Araujo
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引用次数: 0

摘要

隔膜蛋白是丝状核苷酸结合蛋白,能以依赖曲率的方式与膜结合,导致结构重塑和屏障形成。作为探索脊索动物发育和进化的模型,肠膜动物(Ciona intestinalis)的基因组中只有四个肽编码基因。这些基因代表了哺乳动物四个经典亚群的直向同源物,使其成为研究隔膜模块化组装成线性低聚物进而形成丝状聚合物的最小化非冗余模型。在这里,我们展示了C. intestinalis septins与其人类同源物相似的生物化学性质,并提供了一个八聚体、一个六聚体和一个四聚体亚复合物的低温电子显微镜结构。八聚体具有典型的排列方式(2-6-7-9-9-7-6-2),它的末端有一个暴露的 NC 接口,可以与六聚体共聚成混合丝。事实上,只有 CiSEPT2 位于末端位置的隔膜组合才能通过 NC-界面联合组装成丝。CiSEPT7-CiSEPT9 四聚体是迄今为止通过冷冻电子显微镜(Cryo-EM)解决的最小的 septin 颗粒,其良好的分辨率(2.7 Å)提供了中央 NC 接口的清晰视图。另一方面,CiSEPT7-CiSEPT9 的 G-界面显示出脆弱的迹象,允许在六聚体和八聚体之间切换,类似于在人类隔膜中看到的情况,但在酵母中却看不到。新结构揭示了相邻界面之间相互联系的分子机制。这表明肠球虫可能是未来研究的一个宝贵工具,它满足了对一个完整但更简单的系统的要求,有助于了解隔膜丝组装和动态背后的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Structural Insights into Ciona intestinalis Septins: Complexes Suggest a Mechanism for Nucleotide-dependent Interfacial Cross-talk

Structural Insights into Ciona intestinalis Septins: Complexes Suggest a Mechanism for Nucleotide-dependent Interfacial Cross-talk

Structural Insights into Ciona intestinalis Septins: Complexes Suggest a Mechanism for Nucleotide-dependent Interfacial Cross-talk

Septins are filamentous nucleotide-binding proteins which can associate with membranes in a curvature-dependent manner leading to structural remodelling and barrier formation. Ciona intestinalis, a model for exploring the development and evolution of the chordate lineage, has only four septin-coding genes within its genome. These represent orthologues of the four classical mammalian subgroups, making it a minimalist non-redundant model for studying the modular assembly of septins into linear oligomers and thereby filamentous polymers. Here, we show that C. intestinalis septins present a similar biochemistry to their human orthologues and also provide the cryo-EM structures of an octamer, a hexamer and a tetrameric sub-complex. The octamer, which has the canonical arrangement (2-6-7-9-9-7-6-2) clearly shows an exposed NC-interface at its termini enabling copolymerization with hexamers into mixed filaments. Indeed, only combinations of septins which had CiSEPT2 occupying the terminal position were able to assemble into filaments via NC-interface association. The CiSEPT7-CiSEPT9 tetramer is the smallest septin particle to be solved by Cryo-EM to date and its good resolution (2.7 Å) provides a well-defined view of the central NC-interface. On the other hand, the CiSEPT7-CiSEPT9 G-interface shows signs of fragility permitting toggling between hexamers and octamers, similar to that seen in human septins but not in yeast. The new structures provide insights concerning the molecular mechanism for cross-talk between adjacent interfaces. This indicates that C. intestinalis may represent a valuable tool for future studies, fulfilling the requirements of a complete but simpler system to understand the mechanisms behind the assembly and dynamics of septin filaments.

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来源期刊
Journal of Molecular Biology
Journal of Molecular Biology 生物-生化与分子生物学
CiteScore
11.30
自引率
1.80%
发文量
412
审稿时长
28 days
期刊介绍: Journal of Molecular Biology (JMB) provides high quality, comprehensive and broad coverage in all areas of molecular biology. The journal publishes original scientific research papers that provide mechanistic and functional insights and report a significant advance to the field. The journal encourages the submission of multidisciplinary studies that use complementary experimental and computational approaches to address challenging biological questions. Research areas include but are not limited to: Biomolecular interactions, signaling networks, systems biology; Cell cycle, cell growth, cell differentiation; Cell death, autophagy; Cell signaling and regulation; Chemical biology; Computational biology, in combination with experimental studies; DNA replication, repair, and recombination; Development, regenerative biology, mechanistic and functional studies of stem cells; Epigenetics, chromatin structure and function; Gene expression; Membrane processes, cell surface proteins and cell-cell interactions; Methodological advances, both experimental and theoretical, including databases; Microbiology, virology, and interactions with the host or environment; Microbiota mechanistic and functional studies; Nuclear organization; Post-translational modifications, proteomics; Processing and function of biologically important macromolecules and complexes; Molecular basis of disease; RNA processing, structure and functions of non-coding RNAs, transcription; Sorting, spatiotemporal organization, trafficking; Structural biology; Synthetic biology; Translation, protein folding, chaperones, protein degradation and quality control.
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