拟南芥COP1蛋白结构及其相互作用的计算机分析。

IF 1.5 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Sudha Karumuri, Rajib Bandopadhyay
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引用次数: 0

摘要

已有研究表明,拟南芥的COP1 (constitutive phophogenic 1)蛋白在光形态发生的各个方面起着至关重要的作用。COP1与光敏色素A抑制因子SPA1等调节蛋白相互作用,在多个方向上积极影响光调节基因的表达。虽然有一些研究解释了COP1蛋白的功能,但其与SPA1和隐色素相互作用的方法仍未得到详细解释。本研究采用硅片分析方法预测COP1蛋白的三级结构、活性位点残基、功能重要区域和规则表达。通过蛋白-蛋白对接,测定其与SPA1及其他7种调节蛋白,即bZIP转录因子56 (HY5)、转录因子HY5样(HYH)、丝氨酸/苏氨酸蛋白磷酸酶7 (AtPP7)、FAR-RED 1蛋白长下尾轴(HFR1)、OBP3应答蛋白1 (OBP3)、转录因子MYC2 (MYC2/ZBF1)和Z-box结合因子2蛋白(GBF1/ZBF2)的相互作用难易程度。与MYC2的相互作用较强,总能值为-22.46。还发现COP1与SPA1共享三个正则表达区,最后一个正则表达区也存在于MYC2/ZBF1和OBP3中。综上所述,本研究对COP1蛋白结构和功能特性的深入了解将有助于确定COP1在未知的光形态发生机制中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In silico analysis of the structure and interaction of COP1 protein of Arabidopsis thaliana.

Previous studies have shown that COP1 (constitutive photomorphogenic 1) protein of Arabidopsis thaliana plays a crucial role in different aspects of photomorphogenesis. Interaction of COP1 with SPA1 (suppressor of phytochrome A) and other regulatory proteins actively affect light regulatory gene expression in diverse directions. Though several studies have explained the function of COP1 protein, method of its interaction with SPA1 and cryptochromes are still not explained in detail. In this study, in silico analysis was followed to predict the tertiary structure, active site residues, functionally important regions and regular expressions of COP1 protein. Its ease of its interaction with SPA1 and seven other regulatory proteins, namely bZIP transcription factor 56 (HY5), transcription factor HY5-like (HYH), serine/threonine-protein phosphatase 7 (AtPP7), protein long hypocotyl in FAR-RED 1 (HFR1), OBP3-responsive protein 1 (OBP3), transcription factor MYC2 (MYC2/ZBF1) and Z-box binding factor 2 protein (GBF1/ZBF2) was measured using protein-protein docking. Interaction with MYC2 was found to be stronger than with others with a global energy value of -22.46. It was also found that COP1 shared three regions of regular expression with SPA1, the last expression also being present in MYC2/ZBF1 and OBP3. Taken together, the insight into structural and functional properties of COP1 protein presented in this study would be helpful in determining the role of COP1 in unknown mechanisms of photomorphogenesis.

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来源期刊
Indian journal of biochemistry & biophysics
Indian journal of biochemistry & biophysics 生物-生化与分子生物学
CiteScore
2.90
自引率
50.00%
发文量
88
审稿时长
3 months
期刊介绍: Started in 1964, this journal publishes original research articles in the following areas: structure-function relationships of biomolecules; biomolecular recognition, protein-protein and protein-DNA interactions; gene-cloning, genetic engineering, genome analysis, gene targeting, gene expression, vectors, gene therapy; drug targeting, drug design; molecular basis of genetic diseases; conformational studies, computer simulation, novel DNA structures and their biological implications, protein folding; enzymes structure, catalytic mechanisms, regulation; membrane biochemistry, transport, ion channels, signal transduction, cell-cell communication, glycobiology; receptors, antigen-antibody binding, neurochemistry, ageing, apoptosis, cell cycle control; hormones, growth factors; oncogenes, host-virus interactions, viral assembly and structure; intermediary metabolism, molecular basis of disease processes, vitamins, coenzymes, carrier proteins, toxicology; plant and microbial biochemistry; surface forces, micelles and microemulsions, colloids, electrical phenomena, etc. in biological systems. Solicited peer reviewed articles on contemporary Themes and Methods in Biochemistry and Biophysics form an important feature of IJBB. Review articles on a current topic in the above fields are also considered. They must dwell more on research work done during the last couple of years in the field and authors should integrate their own work with that of others with acumen and authenticity, mere compilation of references by a third party is discouraged. While IJBB strongly promotes innovative novel research works for publication as full length papers, it also considers research data emanating from limited objectives, and extension of ongoing experimental works as ‘Notes’. IJBB follows “Double Blind Review process” where author names, affiliations and other correspondence details are removed to ensure fare evaluation. At the same time, reviewer names are not disclosed to authors.
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