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Insights from the molecular docking analysis of phytohormone reveal brassinolide interaction with HSC70 from Pennisetum glaucum

机译:植物激素分子对接分析的见解揭示了油菜素内酯与青草狼尾草HSC70的相互作用

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摘要

The prevailing abiotic stresses, especially heat stress is of great significance on the growth of plants, yield and distribution. In the conditions of heat stress, plants modulate protein processes leading to development of heat tolerance. Of such proteins, the molecular chaperone functions of HSP70/HSC70 proteins are important where their enhanced expression positively correlates with the acquisition of heat tolerance. The key players in the regulation of such tailored protein responses of plants to heat stress are the phytohormones. In the present study, phytohormone mediated interaction of Pennisetum glaucum HSC70 (PgHSC70) protein was performed through docking studies involving sequence analysis, 3D modeling and model evaluation. In silico analysis has shown better interaction and good binding energy of PgHSC70 with the phytohormone brassinolide. Furthermore, the predicted structural information can be helpful for future studies on role of interaction between HSC70 and brassinolide in heat tolerance.
机译:普遍存在的非生物胁迫,特别是热胁迫对植物的生长,产量和分布具有重要意义。在热应激条件下,植物调节蛋白质过程,从而导致耐热性的发展。在此类蛋白质中,HSP70 / HSC70蛋白质的分子伴侣功能很重要,因为它们的增强表达与耐热性的获得呈正相关。调节植物对热胁迫的这种特制蛋白质反应的关键因素是植物激素。在本研究中,植物激素介导的青草狼尾草HSC70(PgHSC70)蛋白的相互作用是通过对接研究进行的,涉及序列分析,3D建模和模型评估。在计算机分析中显示,PgHSC70与植物激素油菜素内酯具有更好的相互作用和良好的结合能。此外,预测的结构信息可能有助于将来研究HSC70和油菜素内酯之间的相互作用在耐热性中的作用。

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