Dores Robert M, Liang Liang, Hollmann Rebecca E, Sandhu Navdeep, Vijayan Mathilakath M
University of Denver, Department of Biological Sciences, Denver, CO, USA.
University of Denver, Department of Biological Sciences, Denver, CO, USA.
Gen Comp Endocrinol. 2016 Aug 1;234:117-22. doi: 10.1016/j.ygcen.2015.12.031. Epub 2016 Jan 2.
The activation of mammalian melanocortin-2 receptor (MC2R) orthologs is dependent on a four-amino acid activation motif (LDYL/I) located in the N-terminal of mammalian MRAP1 (melanocortin-2 receptor accessory protein). Previous alanine substitution analysis had shown that the Y residue in this motif appears to be the most important for mediating the activation of mammalian MC2R orthologs. Similar, but not identical amino acid motifs were detected in rainbow trout MRAP1 (YDYL) and zebrafish MRAP1 (YDYV). To determine the importance of these residues in the putative activation motifs, rainbow trout and zebrafish MRAP1 orthologs were individually co-expressed in CHO cells with rainbow trout MC2R, and the activation of this receptor with either the wild-type MRAP1 ortholog or alanine-substituted analogs of the two teleost MRAP1s was analyzed. Alanine substitutions at all four amino acid positions in rainbow trout MRAP1 blocked activation of the rainbow trout MC2R. Single alanine substitutions of the D and Y residues in rainbow trout and zebrafish MRAP1 indicate that these two residues play a significant role in the activation of rainbow trout MC2R. These observations indicate that there are subtle differences in the way that teleost and mammalian MRAPs are involved in the activation of their corresponding MC2R orthologs.
哺乳动物黑皮质素-2受体(MC2R)直系同源物的激活依赖于位于哺乳动物MRAP1(黑皮质素-2受体辅助蛋白)N端的一个四氨基酸激活基序(LDYL/I)。先前的丙氨酸替代分析表明,该基序中的Y残基似乎对介导哺乳动物MC2R直系同源物的激活最为重要。在虹鳟鱼MRAP1(YDYL)和斑马鱼MRAP1(YDYV)中检测到了相似但不完全相同的氨基酸基序。为了确定这些残基在假定的激活基序中的重要性,将虹鳟鱼和斑马鱼MRAP1直系同源物分别与虹鳟鱼MC2R在CHO细胞中共表达,并分析野生型MRAP1直系同源物或两种硬骨鱼MRAP1的丙氨酸替代类似物对该受体的激活情况。虹鳟鱼MRAP1中所有四个氨基酸位置的丙氨酸替代均阻断了虹鳟鱼MC2R的激活。虹鳟鱼和斑马鱼MRAP1中D和Y残基的单个丙氨酸替代表明,这两个残基在虹鳟鱼MC2R的激活中起重要作用。这些观察结果表明,硬骨鱼和哺乳动物MRAP参与其相应MC2R直系同源物激活的方式存在细微差异。