RYR N末端区域开-闭转换的能量学:对CPVT表型的重要性Energetics of the open - closed transition in the RYR N-terminal region: importance for the CPVT phenotype |
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课程网址: | http://videolectures.net/biophysics2018_zahradnikova_cpvt_phenoty... |
主讲教师: | Alexandra Zahradnikova |
开课单位: | 斯洛伐克科学院 |
开课时间: | 2018-07-09 |
课程语种: | 英语 |
中文简介: | 人类心脏ryanodine受体(RyR)N-末端区域(NTR)的中心螺旋对NTR的稳定性至关重要(1)。该螺旋的突变被证明会导致遗传性心律失常CPVT,特征是RyR的开放概率增加。利用结构建模,我们比较了野生型NTR、七种已知CPVT突变体中的每一种以及一种假定的NTR复合物与发现增加RyR开放概率的结构域肽在开放和闭合构象中的NTR能量学。在这两种构象中,肽结合由于形成新的氢键而导致NTR能量降低,而所有突变由于氢键丢失而导致NTR能量增加。然而,在复合物以及七个突变中的六个突变中,闭合构象和开放构象之间的能量差异较小,因为氢键优先在复合物的开放构象中形成,而它们优先在突变NTR的闭合构象中丢失。我们假设CPVT心律失常中ryanodine受体功能的损害可能至少部分是由于NTR闭合构象和开放构象之间的能量差减小所致。由APVV-15-0302支持。 |
课程简介: | The central helix of the N-terminal region (NTR) of human cardiac ryanodine receptor (RyR) was shown to be crucial for NTR stability (1). Mutations in this helix were shown to cause the hereditary arrhythmia CPVT, characteristic by increased open probability of the RyR. Using structural modelling, we compared energetics of the NTR in the open and closed conformation for wild-type NTR, for each of the seven known CPVT mutants, and for a putative complex of NTR with a domain peptide that was found to increase RyR open probability. In both conformations, peptide binding induced a decrease of NTR energy due to formation of new H-bonds, while all mutations induced an increase of NTR energy due to loss of H-bonds. However, the energetic difference between the closed and open conformation was lower in the complex as well as in six of the seven mutations, because H-bonds were preferentially formed in the open conformation of the complex, while they were preferentially lost in the closed conformation of the mutated NTR. We hypothesize that impairment of ryanodine receptor function in CPVT arrhythmias may be caused at least in part by the decrease of the energetic difference between the closed and the open conformation of the NTR. Supported by APVV-15-0302. |
关 键 词: | 结构建模; 人类心脏ryanodine受体; 能量学 |
课程来源: | 视频讲座网 |
数据采集: | 2021-11-12:zkj |
最后编审: | 2021-12-20:liyy |
阅读次数: | 47 |