小麦几丁质酶基因家族的结构与功能分析。

IF 1.5 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
A K Mishra, Bharati Pandey, Chetna Tyagi, Ohika Chakraborty, Amrender Kumar, A K Jain
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引用次数: 0

摘要

几丁质酶是保护植物免受病原体侵袭的水解酶。然而,几丁质酶在小麦抗病中的确切作用尚未被探索。本文对小麦(Triticum aestivum)几种几丁质酶进行了二级结构分析、详细特征模式研究、顺式调控元件研究、进化趋势和三维分子模型研究。利用模板晶体结构对I、II、IV和3类几丁质酶蛋白进行了同源性建模。使用不同的工具,如Procheck, ProSA和Verify3D,通过分子力学方法进一步细化模型结构。二级结构研究显示,更大比例的残基形成具有特定特征模式的螺旋构象,类似于酪蛋白激酶II磷酸化位点、酰胺化位点、n -肉豆蔻酰化(N-MYR)位点和蛋白激酶C磷酸化位点。表达谱表明,小麦几丁质酶基因在细胞培养和愈伤组织中均有高表达。我们发现小麦几丁质酶在功能上与水稻和大麦更相似。这些结果为几丁质酶家族的进化提供了见解,该家族构成了一系列不同的致病相关蛋白。该研究还提供了几丁质酶蛋白可能的结合位点,并可能进一步提高我们对植物真菌抗性机制的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural and functional analysis of chitinase gene family in wheat (Triticum aestivum).

Chitinases are the hydrolytic enzymes which protect plants against pathogen attack. However, the precise role of chitinases in disease resistance has not been explored in wheat. In the present study, in silico approach, including secondary structure analysis, detailed signature pattern study, cis-acting regulatory elements survey, evolutionary trends and three-dimensional molecular modeling was used for different chitinase classes of wheat (Triticum aestivum). Homology modeling of class I, II, IV and 3 chitinase proteins was performed using the template crystal structure. The model structures were further refined by molecular mechanics methods using different tools, such as Procheck, ProSA and Verify3D. Secondary structure studies revealed greater percentage of residues forming a helix conformation with specific signature pattern, similar to casein kinase II phosphorylation site, amidation site, N-myristoylation (N-MYR) site and protein kinase C phoshorylation site. The expression profile suggested that wheat chitinase gene was highly expressed in cell culture and callus. We found that wheat chitinases showed more functional similarity with rice and barley. The results provide insight into the evolution of the chitinase family, constituting a diverse array of pathogenesis-related proteins. The study also provides insight into the possible binding sites of chitinase proteins and may further enhance our knowledge of fungal resistance mechanism in plants.

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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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