Biala Yoav, Liewald Jana F, Ben-Ami Hagit Cohen, Gottschalk Alexander, Treinin Millet
Department of Physiology, Hebrew University, Hadassah Medical School, Jerusalem, 91120, Israel.
Mol Biol Cell. 2009 Mar;20(5):1419-27. doi: 10.1091/mbc.e08-08-0851. Epub 2008 Dec 30.
RIC-3 belongs to a conserved family of proteins influencing nicotinic acetylcholine receptor (nAChR) maturation. RIC-3 proteins are integral membrane proteins residing in the endoplasmic reticulum (ER), and containing a C-terminal coiled-coil domain (CC-I). Conservation of CC-I in all RIC-3 family members indicates its importance; however, previous studies could not show its function. To examine the role of CC-I, we studied effects of its deletion on Caenorhabditis elegans nAChRs in vivo. Presence of CC-I promoted maturation of particular nAChRs expressed in body-wall muscle, whereas it was not required for other nAChR subtypes expressed in neurons or pharyngeal muscles. This effect is receptor-specific, because it could be reproduced after heterologous expression. Consistently, coimmunoprecipitation analysis showed that CC-I enhances the interaction of RIC-3 with a nAChR that requires CC-I in vivo; thus CC-I appears to enhance affinity of RIC-3 to specific nAChRs. However, we found that this function of CC-I is redundant with functions of sequences downstream to CC-I, potentially a second coiled-coil. Alternative splicing in both vertebrates and invertebrates generates RIC-3 transcripts that lack the entire C-terminus, or only CC-I. Thus, our results suggest that RIC-3 alternative splicing enables subtype specific regulation of nAChR maturation.
RIC-3属于一个保守的蛋白质家族,可影响烟碱型乙酰胆碱受体(nAChR)的成熟。RIC-3蛋白是内质网(ER)中的整合膜蛋白,含有一个C端卷曲螺旋结构域(CC-I)。所有RIC-3家族成员中CC-I的保守性表明其重要性;然而,先前的研究未能揭示其功能。为了研究CC-I的作用,我们在体内研究了其缺失对秀丽隐杆线虫nAChR的影响。CC-I的存在促进了体壁肌肉中特定nAChR的成熟,而在神经元或咽肌中表达的其他nAChR亚型则不需要它。这种效应具有受体特异性,因为在异源表达后可以重现。一致地,免疫共沉淀分析表明,CC-I增强了RIC-3与体内需要CC-I的nAChR的相互作用;因此,CC-I似乎增强了RIC-3对特定nAChR的亲和力。然而,我们发现CC-I的这种功能与CC-I下游序列(可能是第二个卷曲螺旋)的功能冗余。脊椎动物和无脊椎动物中的可变剪接产生了缺乏整个C端或仅缺乏CC-I的RIC-3转录本。因此,我们的结果表明,RIC-3可变剪接能够对nAChR成熟进行亚型特异性调节。