Zhang Meilin, Mizrachi Dario, Fanelli Francesca, Segaloff Deborah L
Department of Physiology and Biophysics, The University of Iowa, Iowa City, Iowa 52242, USA.
J Biol Chem. 2005 Jul 15;280(28):26169-76. doi: 10.1074/jbc.M502102200. Epub 2005 May 20.
The human lutropin receptor (hLHR) plays a pivotal role in reproductive endocrinology. A number of naturally occurring mutations of the hLHR have been identified that cause the receptor to become constitutively active. To gain further insights into the structural basis for the activation of the hLHR by activating mutations, we chose to examine a particularly strong constitutively activating mutation of this receptor, L457R, in which a leucine that is highly conserved among rhodopsin-like G protein-coupled receptors in helix 3 has been substituted with arginine. Using both disruptive as well as reciprocal mutagenesis strategies, our studies demonstrate that the ability of L457R to stabilize an active form of the hLHR is because of the formation of a salt bridge between the replacing amino acid and Asp-578 in helix 6. Such a lock between the transmembrane portions of helices 3 and 6 is concurrent with weakening the connections between the cytosolic ends of the same helices, including the interaction found in the wild-type receptor between Arg-464, of the (E/D)R(Y/W) motif, and Asp-564. This structural effect is properly marked by the increase in the solvent accessibility of selected amino acids at the cytosolic interfaces between helices 3 and 6. The integrity of the conserved amino acids Asn-615 and Asn-619 in helix 7 is required for the transfer of the structural change from the activating mutation site to the cytosolic interface between helices 3 and 6. The results of in vitro and computational experiments further suggest that the structural trigger of the constitutive activity of the L457R mutant may also be responsible for its lack of hormone responsiveness.
人促黄体生成素受体(hLHR)在生殖内分泌学中起关键作用。已鉴定出许多hLHR的自然发生突变,这些突变导致该受体组成性激活。为了进一步深入了解激活突变激活hLHR的结构基础,我们选择研究该受体一个特别强的组成性激活突变L457R,其中在螺旋3中视紫红质样G蛋白偶联受体中高度保守的亮氨酸被精氨酸取代。使用破坏性和相互诱变策略,我们的研究表明,L457R稳定hLHR活性形式的能力是由于取代氨基酸与螺旋6中的Asp-578之间形成了盐桥。螺旋3和6的跨膜部分之间的这种锁定与减弱相同螺旋的胞质端之间的连接同时发生,包括野生型受体中(E/D)R(Y/W)基序的Arg-464与Asp-564之间的相互作用。这种结构效应通过螺旋3和6之间胞质界面处选定氨基酸的溶剂可及性增加而得到恰当体现。螺旋7中保守氨基酸Asn-615和Asn-619的完整性是将结构变化从激活突变位点传递到螺旋3和6之间胞质界面所必需的。体外和计算实验结果进一步表明,L457R突变体组成性活性的结构触发因素可能也是其缺乏激素反应性的原因。