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家蚕前胸腺抑制肽受体通过果蝇性肽经由Gα(i/o)蛋白偏向性信号级联反应被变构激活。

Bombyx mori prothoracicostatic peptide receptor is allosterically activated via a Gα(i/o)-protein-biased signalling cascade by Drosophila sex peptide.

作者信息

He Xiaobai, Zang Jiashu, Yang Huipeng, Huang Haishan, Shi Ying, Zhu Chenggang, Zhou Naiming

机构信息

*Institute of Biochemistry, College of Life Sciences, Zijingang Campus, Zhejiang University, Hangzhou, Zhejiang, 310058, China.

†Zhejiang Provincial Key Laboratory of Medical Genetics, School of Laboratory Medicine and Life Science, Wenzhou Medical University, Wenzhou, Zhejiang, 325035, China.

出版信息

Biochem J. 2015 Mar 1;466(2):391-400. doi: 10.1042/BJ20141146.

Abstract

In insects, molting and metamorphosis are strictly regulated by ecdysteroids. Ecdysteroid synthesis is positively or negatively controlled by several neuropeptides. The prothoracicostatic peptide (PTSP) BmPTSP (Bombyx mori prothoracicostatic peptide), isolated from the larval brain of B. mori, has been demonstrated to inhibit ecdysteroid synthesis in the prothoracic glands (PGs) [Hua et al. (1999) J. Biol. Chem. 274, 31169-31173]. More recently, the newly recognized B. mori receptor for Drosophila melanogaster sex peptide (DmSP) has been identified as a receptor for BmPTSP. However, details on the signalling pathways and physiological functions of this receptor have remained elusive. In the present paper, we report the functional characterization of the BmPTSP receptor (BmPTSPR)/sex peptide (SP) receptor (SPR) using both mammalian and insect cells. Synthetic DmSP shows the potential to inhibit forskolin (FSK) or adipokinetic hormone (AKH)-induced cAMP-response element (CRE)-driven luciferase (Luc) activity in a manner comparable with synthetic BmPTSP1. However, DmSP displayed a much lower activity in triggering Ca²⁺ mobilization and internalization than did BmPTSP1. Additionally, 6-carboxy-fluorescein fluorophore (FAM)-labelled DmSP and BmPTSP3 were found to bind specifically to BmPTSPR/SPR. The binding of FAM-DmSP was displaced by unlabelled DmSP, but not by unlabelled BmPTSP1 and, vice versa, the binding of FAM-BmPTSP3 was blocked by unlabelled BmPTSP3, but not by unlabelled DmSP. Moreover, internalization assays demonstrated that BmPTSP1, but not DmSP, evoked recruitment of the Bombyx non-visual arrestin, Kurtz, to the activated BmPTSPR/SPR in the plasma membrane. This was followed by induction of internalization. This suggests that BmPTSP1 is probably an endogenous ligand specific for BmPTSPR/SPR. We therefore designate this receptor BmPTSPR. In contrast, DmSP is an allosteric agonist that is biased towards Gα(i/o)-dependent cAMP production and away from Ca²⁺ mobilization and arrestin recruitment.

摘要

在昆虫中,蜕皮和变态受到蜕皮甾类的严格调控。蜕皮甾类的合成受到几种神经肽的正向或负向控制。从家蚕幼虫脑部分离出的前胸腺抑制肽(PTSP)BmPTSP(家蚕前胸腺抑制肽)已被证明可抑制前胸腺(PGs)中蜕皮甾类的合成[Hua等人(1999年)《生物化学杂志》274卷,31169 - 31173页]。最近,新发现的家蚕黑腹果蝇性肽(DmSP)受体已被鉴定为BmPTSP的受体。然而,关于该受体的信号通路和生理功能的细节仍不清楚。在本文中,我们使用哺乳动物细胞和昆虫细胞报告了BmPTSP受体(BmPTSPR)/性肽(SP)受体(SPR)的功能特性。合成的DmSP显示出抑制福斯可林(FSK)或脂肪动激素(AKH)诱导的环磷酸腺苷反应元件(CRE)驱动的荧光素酶(Luc)活性的潜力,其方式与合成的BmPTSP1相当。然而,DmSP在触发Ca²⁺动员和内化方面的活性比BmPTSP1低得多。此外,发现6 - 羧基荧光素荧光团(FAM)标记的DmSP和BmPTSP3能特异性结合BmPTSPR/SPR。未标记的DmSP可取代FAM - DmSP的结合,但未标记的BmPTSP1则不能,反之亦然,未标记的BmPTSP3可阻断FAM - BmPTSP3的结合,但未标记的DmSP则不能。此外,内化分析表明,BmPTSP1而非DmSP能促使家蚕非视觉抑制蛋白Kurtz募集到质膜上活化的BmPTSPR/SPR处。随后诱导内化。这表明BmPTSP1可能是BmPTSPR/SPR的内源性特异性配体。因此,我们将该受体命名为BmPTSPR。相比之下,DmSP是一种变构激动剂,偏向于依赖Gα(i/o)产生环磷酸腺苷,而远离Ca²⁺动员和抑制蛋白募集。

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