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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Putative osmosensor-OsHK3b-a histidine kinase protein from rice shows high structural conservation with its ortholog AtHK1 from Arabidopsis
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Putative osmosensor-OsHK3b-a histidine kinase protein from rice shows high structural conservation with its ortholog AtHK1 from Arabidopsis

机译:水稻推测的渗透传感器-OsHK3b-a组氨酸激酶蛋白与拟南芥的直向同源物AtHK1表现出高度的结构保守性

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摘要

Prokaryotes and eukaryotes respond to various environmental stimuli using the two-component system (TCS). Essentially, it consists of membrane-bound histidine kinase (HK) which senses the stimuli and further transfers the signal to the response regulator, which in turn, regulates expression of various target genes. Recently, sequence-based genome wide analysis has been carried out in Arabidopsis and rice to identify all the putative members of TCS family. One of the members of this family i.e. AtHK1, (a putative osmosensor, hybrid-type sensory histidine kinase) is known to interact with AtHPt1 (phosphotransfer proteins) in Arabidopsis. Based on predicted rice interactome network (PRIN), the ortholog of AtHK1 in rice, OsHK3b, was found to be interacting with OsHPt2. The analysis of amino acid sequence of AtHK1 showed the presence of transmitter domain (TD) and receiver domain (RD), while OsHK3b showed presence of three conserved domains namely CHASE (signaling domain), TD, and RD. In order to elaborate on structural details of functional domains of hybrid-type HK and phosphotransfer proteins in both these genera, we have modeled them using homology modeling approach. The structural motifs present in various functional domains of the orthologous proteins were found to be highly conserved. Binding analysis of the RD domain of these sensory proteins in Arabidopsis and rice revealed the role of various residues such as histidine in HPt protein which are essential for their interaction.
机译:原核生物和真核生物使用两组分系统(TCS)对各种环境刺激做出反应。从本质上讲,它由膜结合的组氨酸激酶(HK)组成,该膜可检测刺激并将信号进一步传递至响应调节剂,从而调节各种靶基因的表达。最近,已在拟南芥和水稻中进行了基于序列的全基因组分析,以鉴定TCS家族的所有假定成员。已知该家族的成员之一,即AtHK1(推定的渗透传感器,杂合型感觉组氨酸激酶)与拟南芥中的AtHPt1(磷酸转移蛋白)相互作用。基于预测的水稻相互作用组网络(PRIN),发现水稻AtHK1的直系同源基因OsHK3b与OsHPt2相互作用。 AtHK1的氨基酸序列分析显示存在发射器结构域(TD)和接收器结构域(RD),而OsHK3b显示存在三个保守结构域,即CHASE(信号结构域),TD和RD。为了详细说明这两个属中的混合型HK和磷酸转移蛋白的功能域的结构细节,我们使用同源建模方法对它们进行了建模。发现存在于直系同源蛋白的各种功能域中的结构基序是高度保守的。对拟南芥和水稻中这些感觉蛋白的RD结构域的结合分析揭示了HPt蛋白中各种残基(例如组氨酸)的作用,这对于它们的相互作用至关重要。

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