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3D structure prediction of replication factor C subunits (RFC) and their interactome in Arabidopsis thaliana

机译:拟南芥中复制因子C亚基(RFC)及其相互作用组的3D结构预测

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DNA stress can causes potentially spontaneous genome damage during DNA replication process. Proteins involved in this process are DNA-dependent ATPases, required for replication and repair. In this study the 3-D structure of RFC protein subunits in Arabidopsis thaliana: RFC1, RFC2, RFC3, RFC4 and RFC5 are predicted and confirmed by Ramachadran plot. The amino acid sequences are highly similar to the sequences of the homologous human RFC 140-, 37-, 36-, 40-, and 38 kDa subunits, respectively, and also show amino acid sequence similarity to functionally homologous proteins from E. coli. All five subunits show conserved regions characteristic of ATP/GTP-binding proteins and have significant degree of similarity among each other. The segments of conserved amino acid sequences that define a family of related proteins have been identified. RFC1 is identical to CDC44, a gene identified as a cell division cycle gene encoding a protein involved in DNA metabolism. Subcellular localization and interactions of each protein RFC protein subunit is determined. It subsequently became clear that RFC proteins and their interactome have functions in cell cycle regulation and/or DNA replication and repair processes. In addition, AtRFC subunits are controlling the biosynthesis of salicylic and salicylic acid-mediated defense responses in Arabidopsis.
机译:DNA应力可能在DNA复制过程中引起潜在的自然基因组损伤。此过程涉及的蛋白质是复制和修复所需的DNA依赖性ATPase。在这项研究中,拟南芥中RFC蛋白亚基的3-D结构:通过Ramachadran图预测并确认了RFC1,RFC2,RFC3,RFC4和RFC5。氨基酸序列分别与同源人RFC 140-,37-,36-,40-和38 kDa亚基的序列高度相似,并且还显示出与来自大肠杆菌的功能同源蛋白的氨基酸序列相似性。所有五个亚基均显示出ATP / GTP结合蛋白的保守区域特征,并且彼此之间具有显着的相似度。已经鉴定了定义相关蛋白家族的保守氨基酸序列的区段。 RFC1与CDC44相同,CDC44是被鉴定为细胞分裂周期基因,其编码参与DNA代谢的蛋白质。确定每个蛋白RFC蛋白亚基的亚细胞定位和相互作用。随后变得清楚的是,RFC蛋白及其相互作用组在细胞周期调节和/或DNA复制和修复过程中具有功能。此外,AtRFC亚基控制着拟南芥中水杨酸和水杨酸介导的防御反应的生物合成。

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