Kudo M, Osuga Y, Kobilka B K, Hsueh A J
Division of Reproductive Biology, the Department of Obstetrics and Gynecology, Stanford University Medical School, Stanford, California 94305, USA.
J Biol Chem. 1996 Sep 13;271(37):22470-8. doi: 10.1074/jbc.271.37.22470.
Gonadotropin receptors are members of the seven-transmembrane (TM) receptor family. Several point mutations in TM V and VI and the intracellular loop 3 (i3) have been identified in the luteinizing hormone (LH) receptor gene, leading to constitutive activation of the receptor. Because gonadotropin receptors are highly conserved, we mutated the follicle-stimulating hormone (FSH) receptor at the corresponding amino acids. However, the FSH receptor mutants showed minimal increases in basal cAMP production. Taking advantage of this difference between the two receptors, we designed chimeric receptors with or without a point mutation in the i3 to identify the region in the LH receptor important for its constitutive activation. Introduction of the point mutation into chimeric receptors containing only TM V to VI from the LH receptor led to major increases in ligand-independent cAMP production. Furthermore, a chimeric receptor with only TM V and VI derived from the LH receptor can be rendered constitutively active by the mutation in the i3 from the FSH receptor. These results suggest that interactions between TM V and VI of the FSH receptor are essential for maintaining the receptor in the more constrained state, whereas interactions between these domains of the LH receptor are permissive for constitutively activating mutations in the i3.
促性腺激素受体是七跨膜(TM)受体家族的成员。在促黄体生成素(LH)受体基因中已鉴定出TM V和VI以及细胞内环3(i3)中的几个点突变,导致受体的组成性激活。由于促性腺激素受体高度保守,我们在相应氨基酸处对促卵泡激素(FSH)受体进行了突变。然而,FSH受体突变体在基础cAMP产生方面的增加最小。利用这两种受体之间的这种差异,我们设计了在i3中有或没有点突变的嵌合受体,以确定LH受体中对其组成性激活重要的区域。将点突变引入仅包含来自LH受体的TM V至VI的嵌合受体中,导致配体非依赖性cAMP产生大幅增加。此外,仅具有来自LH受体的TM V和VI的嵌合受体可通过来自FSH受体的i3中的突变而被组成性激活。这些结果表明,FSH受体的TM V和VI之间的相互作用对于将受体维持在更受限的状态至关重要,而LH受体的这些结构域之间的相互作用允许i3中的组成性激活突变。