Biomedical Informatics Centre, ICMR-National Institute for Research in Reproductive Health, Mumbai 400012, Maharashtra, India.
National Center for Preclinical Reproductive and Genetic Toxicology, ICMR-National Institute for Research in Reproductive Health, Mumbai 400012, Maharashtra, India.
Biochim Biophys Acta Biomembr. 2021 Jan 1;1863(1):183492. doi: 10.1016/j.bbamem.2020.183492. Epub 2020 Oct 13.
Interaction of follicle stimulating hormone (FSH) with its cognate receptor (FSHR) is critical for maintaining reproductive health. FSHR has a large extracellular domain (ECD), composed of leucine rich repeats (LRRs) and hinge region, a transmembrane domain (TMD) and a short C-terminal domain (CTD). In this study, we have identified a short peptidic stretch in the hinge region (hFSHR(271-275)), through extensive computational modeling, docking and MD simulations, that is capable of independently interacting with the extracellular loops of FSHR(TMD). In vitro studies revealed that FSHR(271-275) peptide increased binding of [I]-FSH to rat Fshr as well as FSH-induced cAMP production. Administration of FSHR(271-275) peptide in immature female rats significantly increased FSH-mediated ovarian weight gain and promoted granulosa cell proliferation. In summary, the results demonstrate that the synthetic peptide corresponding to amino acids 271-275 of hFSHR-hinge region stimulates FSH-FSHR interaction and behaves as positive allosteric modulator of FSHR. The study also lends evidence to the existing proposition that hinge region maintains the receptor in an inactive conformation in the absence of its ligand by engaging in intramolecular interactions with extracellular loops of TMD.
卵泡刺激素(FSH)与其同源受体(FSHR)的相互作用对于维持生殖健康至关重要。FSHR 具有一个由富含亮氨酸重复序列(LRRs)和铰链区、跨膜域(TMD)和短 C 端结构域(CTD)组成的大型细胞外结构域(ECD)。在这项研究中,我们通过广泛的计算建模、对接和 MD 模拟,确定了铰链区(hFSHR(271-275))中的一个短肽段,该肽段能够独立与 FSHR(TMD)的细胞外环相互作用。体外研究表明,FSHR(271-275)肽增加了 [I]-FSH 与大鼠 Fshr 的结合以及 FSH 诱导的 cAMP 产生。在未成熟雌性大鼠中给予 FSHR(271-275)肽可显著增加 FSH 介导的卵巢重量增加,并促进颗粒细胞增殖。总之,这些结果表明,与 hFSHR-铰链区的氨基酸 271-275 相对应的合成肽刺激 FSH-FSHR 相互作用,并作为 FSHR 的正变构调节剂。该研究还为现有观点提供了证据,即铰链区通过与 TMD 的细胞外环进行分子内相互作用,在没有配体的情况下使受体保持在无活性构象。