Gantz I, DelValle J, Wang L D, Tashiro T, Munzert G, Guo Y J, Konda Y, Yamada T
Department of Surgery, University of Michigan Medical Center, Ann Arbor 48109-0368.
J Biol Chem. 1992 Oct 15;267(29):20840-3.
We undertook these studies to characterize the molecular basis of the interaction of histamine with the H2 receptor. Key areas of homology in the structures of the histamine H2 and beta 2 adrenergic receptor suggested specific transmembrane amino acids that might be important for binding of histamine. A third transmembrane aspartic acid of the histamine receptor (Asp98), thought to serve as a counter anion that interacts with the cationic amine moiety of histamine, was mutated to Asn98, and the mutated receptor was expressed in Hepa cells. Removal of the negatively charged amino acid abolished both binding of the H2 receptor antagonist [methyl-3H]tiotidine and histamine stimulated increases in cellular cAMP content. Mutation of a fifth transmembrane aspartic acid (Asp186) to Ala186 or Asn186 by itself or in conjunction with mutation of another fifth transmembrane amino acid (Thr190 to Ala190) resulted in a loss of [methyl-3H] tiotidine binding, although the generation of cAMP in response to histamine was maintained. The histamine receptor with only a Thr190 to Ala190 or Cys190 mutation retained the ability to bind [methyl-3H]tiotidine, but both the affinity and efficacy of binding were reduced. These data lead us to propose a model for histamine binding in which Asp98 is essential for histamine binding and action, Asp186 defines H2 selectivity, and Thr190 is important in establishing the kinetics of histamine binding, but is not essential for H2 selectivity.
我们开展这些研究以阐明组胺与H2受体相互作用的分子基础。组胺H2受体和β2肾上腺素能受体结构中的关键同源区域提示了可能对组胺结合至关重要的特定跨膜氨基酸。组胺受体的第三个跨膜天冬氨酸(Asp98)被认为作为一个抗衡阴离子与组胺的阳离子胺部分相互作用,将其突变为Asn98,并在Hepa细胞中表达突变受体。去除带负电荷的氨基酸消除了H2受体拮抗剂[甲基-3H]替丁的结合以及组胺刺激引起的细胞内cAMP含量增加。将第五个跨膜天冬氨酸(Asp186)突变为Ala186或Asn186,单独或与另一个第五个跨膜氨基酸(Thr190突变为Ala190)一起突变,导致[甲基-3H]替丁结合丧失,尽管对组胺产生cAMP的能力得以维持。仅Thr190突变为Ala190或Cys190的组胺受体保留了结合[甲基-3H]替丁的能力,但结合的亲和力和效能均降低。这些数据使我们提出一个组胺结合模型,其中Asp98对组胺结合和作用至关重要,Asp186决定H2选择性,Thr190对建立组胺结合动力学很重要,但对H2选择性并非必不可少。