Department of Chemistry, Columbia University, New York, NY 10031, USA.
Biomolecules. 2022 Aug 15;12(8):1122. doi: 10.3390/biom12081122.
The structure of the transmembrane domain of the pH-activated bacterial potassium channel KcsA has been extensively characterized, yet little information is available on the structure of its cytosolic, functionally critical N- and C-termini. This study presents high-resolution magic angle spinning (HR-MAS) and fractional deuteration as tools to study these poorly resolved regions for proteoliposome-embedded KcsA. Using H-detected HR-MAS NMR, we show that the C-terminus transitions from a rigid structure to a more dynamic structure as the solution is rendered acidic. We make previously unreported assignments of residues in the C-terminus of lipid-embedded channels. These data agree with functional models of the C-terminus-stabilizing KcsA tetramers at a neutral pH with decreased stabilization effects at acidic pH. We present evidence that a C-terminal truncation mutation has a destabilizing effect on the KcsA selectivity filter. Finally, we show evidence of hydrolysis of lipids in proteoliposome samples during typical experimental timeframes.
尽管 pH 激活细菌钾通道 KcsA 的跨膜结构已得到广泛研究,但有关其细胞溶质、功能关键的 N 端和 C 端结构的信息却很少。本研究提出了高分辨率魔角旋转(HR-MAS)和分数氘化作为研究这些难以解析区域的工具,用于研究嵌入脂质体的 KcsA。使用 H 检测 HR-MAS NMR,我们表明随着溶液变酸,C 端从刚性结构转变为更动态的结构。我们对脂质嵌入通道的 C 端残基进行了以前未报道的分配。这些数据与中性 pH 下稳定 KcsA 四聚体的 C 端功能模型一致,在酸性 pH 下稳定效果降低。我们提供的证据表明 C 端截断突变对 KcsA 选择性过滤器具有去稳定作用。最后,我们证明在典型的实验时间内,脂质体样品中的脂质发生了水解。