Verma Richa, Ghosh Jimut Kanti
Molecular and Structural Biology Division, Central Drug Research Institute, CSIR, Lucknow-226001, India.
Biochim Biophys Acta. 2010 Mar;1798(3):461-70. doi: 10.1016/j.bbamem.2009.12.014. Epub 2010 Jan 4.
Mutations in various voltage gated cardiac ion channels are the cause of different forms of long QT syndrome (LQTS), which is an inherited arrhythmic disorder marked as a prolonged QT interval on electrocardiogram. Of these LQTS1 is associated with mutations in the gene encoding KCNQ1 (KvLQT1) channel. One responsible mutation, G269S, in the S5 segment of KvLQT1, that affects the proper expression and function of channel protein leads to LQTS1. Our objective was to study how G269S mutation interferes with the structure and function of a synthetic S5 segment of KvLQT1 channel. One wild type 22-residue peptide and another mutant peptide of the same length with G269S mutation, derived from the S5 segment were synthesized and labeled with fluorescent probes. The mutant peptide exhibited lower affinity towards phospholipid vesicles as compared to the wild type peptide and showed impaired assembly and localization onto the lipid vesicles as evidenced by membrane-binding, energy transfer and proteolytic cleavage experiments. Loss in the helical content of S5 mutant peptide in membrane-mimetic environments was observed. Furthermore, it was observed that G269S mutation significantly inhibited the ability of S5 peptide to permeabilize the lipid vesicles. The present studies show the basis of change in function of the selected S5 segment as a result of G269S mutation which is associated with LQT1 syndrome. We speculate that the structural and functional changes related to the glycine to serine amino acid substitution in the S5 segment may also influence the activity of the whole KvLQT1 channel.
各种电压门控心脏离子通道的突变是不同形式长QT综合征(LQTS)的病因,长QT综合征是一种遗传性心律失常疾病,其特征是心电图上QT间期延长。其中,LQTS1与编码KCNQ1(KvLQT1)通道的基因突变有关。KvLQT1的S5段中有一个导致LQTS1的致病突变G269S,该突变影响通道蛋白的正常表达和功能。我们的目的是研究G269S突变如何干扰KvLQT1通道合成S5段的结构和功能。我们合成了源自S5段的一种野生型22个残基的肽以及另一种具有G269S突变的相同长度的突变肽,并用荧光探针进行标记。与野生型肽相比,突变肽对磷脂囊泡的亲和力较低,并且膜结合、能量转移和蛋白水解切割实验表明,其在脂质囊泡上的组装和定位受损。在模拟膜环境中观察到S5突变肽的螺旋含量降低。此外,还观察到G269S突变显著抑制了S5肽使脂质囊泡通透的能力。本研究揭示了与LQT1综合征相关的G269S突变导致所选S5段功能改变的基础。我们推测,S5段中甘氨酸到丝氨酸的氨基酸取代所导致的结构和功能变化可能也会影响整个KvLQT通道的活性。