Reid Helen M, Mulvaney Eamon P, Turner Elizebeth C, Kinsella B Therese
School of Biomolecular and Biomedical Sciences, Conway Institute of Biomolecular and Biomedical Research, University College Dublin, Belfield, Dublin 4, Ireland.
J Biol Chem. 2010 Jun 11;285(24):18709-26. doi: 10.1074/jbc.M110.106476. Epub 2010 Apr 15.
The human prostacyclin receptor (hIP) undergoes agonist-induced internalization and subsequent recyclization in slowly recycling endosomes involving its direct physical interaction with Rab11a. Moreover, interaction with Rab11a localizes to a 22-residue putative Rab11 binding domain (RBD) within the carboxyl-terminal tail of the hIP, proximal to the transmembrane 7 (TM7) domain. Because the proposed RBD contains Cys(308) and Cys(311), in addition to Cys(309), that are known to undergo palmitoylation, we sought to identify the structure/function determinants of the RBD, including the influence of palmitoylation, on agonist-induced trafficking of the hIP. Through complementary approaches in yeast and mammalian cells along with computational structural studies, the RBD was localized to a 14-residue domain, between Val(299) and Leu(312), and proposed to be organized into an eighth alpha-helical domain (alpha-helix 8), comprising Val(299)-Val(307), adjacent to the palmitoylated residues at Cys(308)-Cys(311). From mutational and [(3)H]palmitate metabolic labeling studies, it is proposed that palmitoylation at Cys(311) in addition to agonist-regulated deacylation at Cys(309) > Cys(308) may dynamically position alpha-helix 8 in proximity to Rab11a, to regulate agonist-induced intracellular trafficking of the hIP. Moreover, Ala-scanning mutagenesis identified several hydrophobic residues within alpha-helix 8 as necessary for the interaction with Rab11a. Given the diverse membership of the G protein-coupled receptor superfamily, of which many members are also predicted to contain an alpha-helical 8 domain proximal to TM7 and, often, adjacent to palmitoylable cysteine(s), the identification of a functional role for alpha-helix 8, as exemplified as an RBD for the hIP, is likely to have broader significance for certain members of the superfamily.
人前列环素受体(hIP)在缓慢循环的内体中经历激动剂诱导的内化及随后的再循环,这涉及它与Rab11a的直接物理相互作用。此外,与Rab11a的相互作用定位于hIP羧基末端尾巴内一个22个残基的假定Rab11结合结构域(RBD),靠近跨膜7(TM7)结构域。由于所提出的RBD除了已知会发生棕榈酰化的Cys(309)外,还包含Cys(308)和Cys(311),我们试图确定RBD的结构/功能决定因素,包括棕榈酰化对hIP激动剂诱导的转运的影响。通过在酵母和哺乳动物细胞中的互补方法以及计算结构研究,RBD定位于Val(299)和Leu(312)之间的一个14个残基的结构域,并被认为组织成第八个α螺旋结构域(α螺旋8),由Val(299)-Val(307)组成,与Cys(308)-Cys(311)处的棕榈酰化残基相邻。从突变和[³H]棕榈酸代谢标记研究来看,有人提出除了激动剂调节的Cys(309) > Cys(308)去酰化外,Cys(