Volynski Kirill E, Silva John-Paul, Lelianova Vera G, Atiqur Rahman M, Hopkins Colin, Ushkaryov Yuri A
Department of Biological Sciences, Imperial College, London, UK.
EMBO J. 2004 Nov 10;23(22):4423-33. doi: 10.1038/sj.emboj.7600443. Epub 2004 Oct 14.
Heptahelical, or G-protein-coupled, receptors control many cellular functions and normally consist of one polypeptide chain. In contrast, heptahelical receptors that belong to the long N-terminus, group B (LNB) family are cleaved constitutively into two fragments. The N-terminal fragments (NTFs) resemble cell-adhesion proteins and the C-terminal fragments (CTFs) are typical G-protein-coupled receptors (GPCRs) with seven transmembrane regions. However, the functional roles of this cleavage and of any subsequent NTF-CTF interactions remain to be identified. Using latrophilin, a well-studied member of the LNB family, we now demonstrate that cleavage is critical for delivery of this receptor to the cell surface. On the plasma membrane, NTF and CTF behave as separate membrane proteins involved, respectively, in cell-surface reception and signalling. The two fragments can also internalise independently. However, separated NTF and CTF can re-associate on solubilisation. Agonist binding to NTF on the cell surface also induces re-association of fragments and provokes signal transduction via CTF. These findings define a novel principle of structural and functional organisation of the cleaved, two-subunit GPCRs.
七螺旋受体,即G蛋白偶联受体,控制着许多细胞功能,通常由一条多肽链组成。相比之下,属于长N端B族(LNB)家族的七螺旋受体可组成性地裂解为两个片段。N端片段(NTF)类似于细胞粘附蛋白,C端片段(CTF)是具有七个跨膜区域的典型G蛋白偶联受体(GPCR)。然而,这种裂解以及随后任何NTF-CTF相互作用的功能作用仍有待确定。利用LNB家族中一个研究充分的成员——促离子型受体,我们现在证明裂解对于该受体转运到细胞表面至关重要。在质膜上,NTF和CTF作为独立的膜蛋白分别参与细胞表面的识别和信号传导。这两个片段也可以独立内化。然而,分离的NTF和CTF在溶解时可以重新结合。激动剂与细胞表面的NTF结合也会诱导片段重新结合,并通过CTF引发信号转导。这些发现定义了裂解的双亚基GPCR结构和功能组织的一个新原则。