Moyle W R, Matzuk M M, Campbell R K, Cogliani E, Dean-Emig D M, Krichevsky A, Barnett R W, Boime I
Department of Obstetrics/Gynecology, Robert Wood Johnson (Rutgers) Medical School, Piscataway, New Jersey 08854.
J Biol Chem. 1990 May 25;265(15):8511-8.
The glycoprotein hormones are a family of conserved heterodimeric proteins which share a common alpha subunit but differ in their hormone-specific beta subunits. We used chimeras of human chorionic gonadotropin (hCG) and luteinizing hormone (hLH) beta subunits to identify residues which enable monoclonal antibodies (mAb) to distinguish the two hormones. The LH beta-CG beta chimeras appeared to fold similar to hCG beta, since they combined with hCG alpha and, depending on their sequences, were recognized by hCG-selective mAbs. Amino acid residues Arg8-Arg10,Gly47-Ala51, and Gln89-Leu92 form a major epitope region and appear to be adjacent to each other on the surface of hCG beta. Gly47-Ala51 and Gln89-Leu92 are recognized by dimer-specific mAbs while Arg8-Arg10 is recognized by mAbs which have highest affinity for the free beta subunit. These observations suggest that the conformation of this region of the beta subunit changes when the alpha and beta subunits combine. Residues which are C-terminal of Asp112 form a second epitope domain. mAbs to the third domain distinguish hCG beta and hLH beta by the presence of Asn77 in hCG beta and can be detected after hCG binds to receptors. These findings were used to develop a model of hCG beta which predicts the locations of these residues and their positions relative to the alpha subunit and receptor interfaces.
糖蛋白激素是一类保守的异二聚体蛋白家族,它们共享一个共同的α亚基,但激素特异性β亚基不同。我们使用人绒毛膜促性腺激素(hCG)和促黄体生成素(hLH)β亚基的嵌合体来鉴定使单克隆抗体(mAb)能够区分这两种激素的残基。LHβ-CGβ嵌合体的折叠方式似乎与hCGβ相似,因为它们与hCGα结合,并且根据其序列,被hCG选择性单克隆抗体识别。氨基酸残基Arg8-Arg10、Gly47-Ala51和Gln89-Leu92形成一个主要表位区域,并且在hCGβ表面上似乎彼此相邻。Gly47-Ala51和Gln89-Leu92被二聚体特异性单克隆抗体识别,而Arg8-Arg10被对游离β亚基具有最高亲和力的单克隆抗体识别。这些观察结果表明,当α和β亚基结合时,β亚基该区域的构象会发生变化。Asp112的C末端残基形成第二个表位结构域。针对第三个结构域的单克隆抗体通过hCGβ中Asn77的存在来区分hCGβ和hLHβ,并且在hCG与受体结合后可以检测到。这些发现被用于建立hCGβ的模型,该模型预测这些残基的位置以及它们相对于α亚基和受体界面的位置。