Kuhn Michaela, Ng Chi Kin Domingos, Su Yueh-Hsing, Kilić Ana, Mitko Danuta, Bien-Ly Nga, Kömüves László G, Yang Ruey-Bing
Institut fuer Pharmakologie und Toxikologie, Universitaetsklinikum Muenster, Muenster, Germany.
Biochem J. 2004 Apr 15;379(Pt 2):385-93. doi: 10.1042/BJ20031624.
We have identified a novel membrane form of guanylate cyclase (GC) from a mouse testis cDNA library and termed it mGC-G (mouse GC-G) based on its high sequence homology to rat GC-G. It encodes a potential type I transmembrane receptor, with the characteristic domain structure common to all members of the family of membrane GCs, including an extracellular, putative ligand-binding domain, a single membrane-spanning segment and cytoplasmic protein kinase-like and cyclase catalytic domains. Real-time quantitative reverse transcriptase--PCR and Northern-blot analyses showed that mGC-G is highly and selectively expressed in mouse testis. Phylogenetic analysis based on the extracellular protein sequence revealed that mGC-G is closely related to members of the subfamily of natriuretic peptide receptor GCs. When overexpressed in HEK-293T cells (human embryonic kidney 293T cells) or COS-7 cells, mGC-G manifests as a membrane-bound glycoprotein, which can form either homomeric or heteromeric complexes with the natriuretic peptide receptor GC-A. It exhibits marked cGMP-generating GC activity; however, notably, all ligands known to activate other receptor GCs failed to stimulate enzymic activity. The unique testis-enriched expression of mGC-G, which is completely different from the broader tissue distribution of rat GC-G, suggests the existence of as-yet-unidentified ligands and unappreciated species-specific physiological functions mediated through mGC-G/cGMP signalling in the testis.
我们从小鼠睾丸cDNA文库中鉴定出一种新型的鸟苷酸环化酶(GC)膜形式,并根据其与大鼠GC-G的高度序列同源性将其命名为mGC-G(小鼠GC-G)。它编码一种潜在的I型跨膜受体,具有膜GC家族所有成员共有的特征性结构域结构,包括一个细胞外的、推测的配体结合结构域、一个单一的跨膜片段以及细胞质蛋白激酶样和环化酶催化结构域。实时定量逆转录PCR和Northern印迹分析表明,mGC-G在小鼠睾丸中高度且选择性地表达。基于细胞外蛋白序列的系统发育分析表明,mGC-G与利钠肽受体GC亚家族的成员密切相关。当在HEK-293T细胞(人胚肾293T细胞)或COS-7细胞中过表达时,mGC-G表现为一种膜结合糖蛋白,它可以与利钠肽受体GC-A形成同聚体或异聚体复合物。它表现出显著的产生cGMP的GC活性;然而,值得注意的是,所有已知能激活其他受体GC的配体都未能刺激酶活性。mGC-G独特的睾丸富集表达与大鼠GC-G更广泛的组织分布完全不同,这表明存在尚未确定的配体以及通过mGC-G/cGMP信号在睾丸中介导的未被认识的物种特异性生理功能。