Kawamata Y, Habata Y, Fukusumi S, Hosoya M, Fujii R, Hinuma S, Nishizawa N, Kitada C, Onda H, Nishimura O, Fujino M
Discovery Research Laboratories 1, Pharmaceutical Discovery Research Division, Takeda Chemical Industries, Ltd., Wadai 10, Tsukuba, 300-4293, Ibaraki, Japan.
Biochim Biophys Acta. 2001 Apr 23;1538(2-3):162-71. doi: 10.1016/s0167-4889(00)00143-9.
We analyzed the tissue distribution of apelin mRNA in rats by a quantitative reverse transcription-polymerase chain reaction and that of immunoreactive apelin (ir-apelin) by an enzyme immunoassay (EIA) using a monoclonal antibody. The expression levels of apelin mRNA and ir-apelin seemed to be consistent among tissues: they were highly expressed in the lung and mammary gland. By the combination of gel filtration and EIA, we found that the molecular forms of apelin differ among respective tissues: apelin molecules with sizes close to apelin-36 (long forms) were major components in the lung, testis, and uterus, but both long and short (whose sizes were close to [<Glu(65)]apelin-13) forms were detected in the mammary gland. In Scatchard analyses, the radioiodinated apelin-36 analogue bound to the receptor, APJ, with high affinity. In competitive binding assays, apelin-36 and apelin-19 far more efficiently inhibited the binding of the labeled apelin-36 analogue with APJ than [<Glu(65)]apelin-13. In analyses for the dissociation of apelin from APJ, unlabeled apelin-36 replaced more rapidly the labeled apelin-36 analogue bound with APJ than [<Glu(65)]apelin-13. Our results demonstrate that the long and short forms of apelin differently interact with APJ.
我们通过定量逆转录-聚合酶链反应分析了大鼠中apelin mRNA的组织分布,并使用单克隆抗体通过酶免疫测定法(EIA)分析了免疫反应性apelin(ir-apelin)的组织分布。apelin mRNA和ir-apelin的表达水平在各组织间似乎是一致的:它们在肺和乳腺中高表达。通过凝胶过滤和EIA相结合的方法,我们发现apelin的分子形式在各组织中有所不同:大小接近apelin-36(长形式)的apelin分子是肺、睾丸和子宫中的主要成分,但在乳腺中同时检测到了长形式和短形式(其大小接近[<Glu(65)]apelin-13)。在Scatchard分析中,放射性碘化的apelin-36类似物与受体APJ具有高亲和力结合。在竞争性结合试验中,apelin-36和apelin-19比[<Glu(65)]apelin-13更有效地抑制标记的apelin-36类似物与APJ的结合。在apelin与APJ解离的分析中,未标记的apelin-36比[<Glu(65)]apelin-13更快地取代与APJ结合的标记apelin-36类似物。我们的结果表明,apelin的长形式和短形式与APJ的相互作用不同。