Kostenis E, Zeng F Y, Wess J
Laboratory of Bioorganic Chemistry, NIDDK, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Physiol Paris. 1998 Jun-Aug;92(3-4):265-8. doi: 10.1016/s0928-4257(98)80030-2.
The structural basis underlying the G protein coupling selectivity of different muscarinic receptor subtypes was analyzed by using a combined molecular genetic/biochemical approach. These studies led to the identification of key residues on the receptors as well as the associated G proteins that are critically involved in determining proper receptor/G protein recognition. Mutational analysis of the m3 muscarinic receptor showed that most native cysteine residues are not required for productive receptor/G protein coupling. The putative extracellular disulfide bond was found to be essential for efficient trafficking of the receptor protein to the cell surface but not for receptor-mediated G protein activation.
采用分子遗传学与生物化学相结合的方法,分析了不同毒蕈碱受体亚型G蛋白偶联选择性的结构基础。这些研究确定了受体上的关键残基以及相关的G蛋白,它们在决定受体与G蛋白的正确识别中起关键作用。对m3毒蕈碱受体的突变分析表明,大多数天然半胱氨酸残基对于有效的受体与G蛋白偶联并非必需。发现假定的细胞外二硫键对于受体蛋白向细胞表面的有效转运至关重要,但对于受体介导的G蛋白激活并非必需。