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首页> 外文期刊>Molecular membrane biology >Probing residues in the pore-forming (M2) domain of the Cys-loop receptor homologue GLIC reveals some unusual features
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Probing residues in the pore-forming (M2) domain of the Cys-loop receptor homologue GLIC reveals some unusual features

机译:孔隙成形(M2)结构域的探测残留物的Cys-Loop受体同源物同源物联络显示一些不寻常的特征

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Cys-loop receptors play important roles in signal transduction. The Gloeobacter ligand-gated ion channel (GLIC) pore binds similar compounds to Cys-loop receptor pores, but has the advantage of known structures in open and closed states. GLIC is activated by protons with a pEC50 of 5.4, and has a histidine residue (His 11') in its pore-forming a-helix (M2) which is involved in gating. Here we explore the role of this His and other M2 residues using two-electrode voltage clamp of mutant receptors expressed in oocytes. We show that 11 'His is very sensitive to substitution; replacement with a range of amino acids ablates function. Similarly altering its location in M2 to the 8', 9', 10', 12', 13' or 14' positions ablated function. Most substitutions of Ser6' or Ile9' were also non-functional, although not lle9'Leu and lle9'Val. Unexpectedly, an lle9'His substitution was constitutively active at pH 7, but closed as [H+] increased, with a plC50 of 5.8. Substitution at 2', 5' and 7' had little effect on pEC50. Overall the data show Ser6' and Hisi 1' are critical for the function of the receptor, and thus distinguish the roles of these M2 residues from those of Cys-loop receptors, where substitutions are mostly well tolerated. These data suggest modellers should be aware of these atypical features when using the GLIC pore as a model for Cys-loop receptor pores.
机译:Cys-Loop受体在信号转导中发挥重要作用。 Gloeobacter配体门通道(GLIC)孔将类似的化合物与综合环受体孔结合,但具有开放和封闭状态的已知结构的优点。 GLIC由质子激活,PEC50为5.4,并且在其孔形成的A-Helix(M2)中具有组氨酸残基(他的11'),其参与门控。在这里,我们利用卵母细胞中表达的突变受体的双电极电压钳探讨了他和其他M2残基的作用。我们表明11'他对替代非常敏感;替代一系列氨基酸烧蚀功能。类似地改变其在M2中的位置到8',9',10',12',13'或14'位置消融功能。 Ser6'或ILe9'的大多数替换也是非功能性的,尽管不是LLE9'LEU和LLE9'VAL。出乎意料地,LLE9'HIS替代在pH7中组成型活性,但闭合为[H +],PLC50为5.8。在2',5'和7'替换对PEC50几乎没有影响。总的来说,数据显示SER6'和HISI 1'对于受体的功能至关重要,从而将这些M2残基的作用区分解来自Cys-Loop受体的那些,其中取代主要是耐受良好的。这些数据建议莫德勒在使用GLIC孔作为Cys-Loop受体孔模型时应该了解这些非典型功能。

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