首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Reporter Mutation Studies Show That Nicotinic Acetylcholine Receptor (nAChR) α5 Subunits and/or Variants Modulate Function of α6*-nAChR
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Reporter Mutation Studies Show That Nicotinic Acetylcholine Receptor (nAChR) α5 Subunits and/or Variants Modulate Function of α6*-nAChR

机译:记者突变研究表明烟碱型乙酰胆碱受体(nAChR)α5亚基和/或变异体可调节α6* -nAChR的功能

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摘要

To further the understanding of functional α6α5*-nicotinic acetylcholine receptors (nAChR; the asterisk (*) indicates known or possible presence of other subunits), we have heterologously expressed in oocytes different, mouse or human, nAChR subunit combinations. Coexpression with wild-type α5 subunits or chimeric α5/β3 subunits (in which the human α5 subunit N-terminal, extracellular domain is linked to the remaining domains of the human β3 subunit) almost completely abolishes the very small amount of function seen for α6β4*-nAChR and does not induce function of α6β2*-nAChR. Coexpression with human α5V9S subunits bearing a valine 290 to serine mutation in the 9′ position of the second transmembrane domain does not rescue the function of α6β4*-nAChR or induce function of α6β2*-nAChR. However, coexpression with mutant chimeric α5/β3V9S subunits has a gain-of-function effect (higher functional expression and agonist sensitivity and spontaneous opening inhibited by mecamylamine) on α6β4*-nAChR. Moreover, N143D + M145V mutations in the α6 subunit N-terminal domain enable α5/β3V9S subunits to have a gain-of-function effect on α6β2*-nAChR. nAChR containing chimeric α6/α3 subunits plus either β2 or β4 subunits have some function that is modulated in the presence of α5 or α5/β3 subunits. Coexpression with α5/β3V9S subunits has a gain-of-function effect more pronounced than that in the presence of α5V9S subunits. Gain-of-function effects are dependent, sometimes subtly, on the nature and apparently the extracellular, cytoplasmic, and/or transmembrane domain topology of partner subunits. These studies yield insight into assembly of functional α6α5*-nAChR and provide tools for development of α6*-nAChR-selective ligands that could be important in the treatment of nicotine dependence, and perhaps other neurological diseases.
机译:为了进一步了解功能性α6α5*烟碱乙酰胆碱受体(nAChR;星号(*)表示已知或可能存在其他亚基),我们已经在不同的小鼠或人卵母细胞中异源表达了nAChR亚基组合。与野生型α5亚基或嵌合α5/β3亚基(其中人α5亚基N端细胞外结构域与人β3亚基的其余结构域相连)的共表达几乎完全消除了α6β4所具有的非常少量的功能* -nAChR,并且不诱导α6β2* -nAChR的功能。与在第二个跨膜结构域9'位置上带有缬氨酸290丝氨酸突变的人α5 V9 ' S 亚基的共表达不能拯救α6β4* -nAChR的功能或诱导α6β2* -nAChR的功能。然而,与突变的嵌合α5/β3 V9 ' S 亚基共表达具有功能获得作用(更高的功能表达和激动剂敏感性以及美甲胺抑制的自发开放)。 α6β4* -nAChR。此外,α6亚基N末端域中的N143D + M145V突变使α5/β3 V9 ' S 亚基对α6β2* -nAChR具有功能增强作用。包含嵌合的α6/α3亚基加上β2或β4亚基的nAChR具有一些在α5或α5/β3亚基存在下被调节的功能。与α5/β3 V9 ' S 亚基共表达的功能获得作用比存在α5 V9 '< sup> S 亚基。功能获得的效果有时(或微妙地)取决于伴侣亚基的性质,并且显然取决于伙伴亚基的细胞外,细胞质和/或跨膜结构域拓扑。这些研究深入了解了功能性α6α5* -nAChR的组装,并提供了开发α6* -nAChR选择性配体的工具,这些配体在尼古丁依赖症以及其他神经疾病的治疗中可能很重要。

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