Chanchevalap S, Yang Z, Cui N, Qu Z, Zhu G, Liu C, Giwa L R, Abdulkadir L, Jiang C
Department of Biology, Georgia State University, Atlanta, Georgia 30302-4010, USA.
J Biol Chem. 2000 Mar 17;275(11):7811-7. doi: 10.1074/jbc.275.11.7811.
ROMK channels are inhibited by intracellular acidification. This pH sensitivity is related to several amino acid residues in the channel proteins such as Lys-61, Thr-51, and His-206 (in ROMK2). Unlike all other amino acids, histidine is titratable at pH 6-7 carrying a positive charge below pH 6. To test the hypothesis that certain histidine residues are engaged in CO(2) and pH sensing of ROMK1, we performed experiments by systematic mutations of all histidine residues in the channel using the site-directed mutagenesis. There are two histidine residues in the N terminus. Mutations of His-23, His-31, or both together did not affect channel sensitivity to CO(2). Six histidine residues are located in the C terminus. His-225, His-274, His-342, and His-354 were critical in CO(2) and pH sensing. Mutation of either of them reduced CO(2) and pH sensitivities by 20-50% and approximately 0.2 pH units, respectively. Simultaneous mutations of all of them eliminated the CO(2) sensitivity and caused this mutant channel to respond to only extremely acidic pH. Similar mutations of His-280 had no effect. The role of His-270 in CO(2) and pH sensing is unclear, because substitutions of this residue with either a neutral, negative, or positive amino acid did not produce any functional channel. These results therefore indicate that histidine residues contribute to the sensitivity of the ROMK1 channel to hypercapnia and intracellular acidosis.
ROMK通道受细胞内酸化抑制。这种pH敏感性与通道蛋白中的几个氨基酸残基有关,如Lys-61、Thr-51和His-206(在ROMK2中)。与所有其他氨基酸不同,组氨酸在pH 6 - 7时可滴定,在pH低于6时带正电荷。为了验证某些组氨酸残基参与ROMK1的CO₂和pH传感这一假设,我们使用定点诱变对通道中所有组氨酸残基进行系统突变来开展实验。N端有两个组氨酸残基。His-23、His-31或两者同时突变均不影响通道对CO₂的敏感性。C端有六个组氨酸残基。His-225、His-274、His-342和His-354对CO₂和pH传感至关重要。其中任何一个突变分别使CO₂和pH敏感性降低20 - 50%和约0.2个pH单位。所有这些残基同时突变消除了CO₂敏感性,并使该突变通道仅对极酸性pH作出反应。His-280的类似突变没有影响。His-270在CO₂和pH传感中的作用尚不清楚。因为用中性、负性或正性氨基酸取代该残基均未产生任何功能性通道。因此,这些结果表明组氨酸残基有助于ROMK1通道对高碳酸血症和细胞内酸中毒的敏感性。