Lauber T, Tidten N, Matecko I, Zeeb M, Rösch P, Marx U C
Lehrstuhl für Biopolymere and Forschungszentrum für Bio-Makromoleküle, Universität Bayreuth 95440, Bayreuth.
Protein Eng Des Sel. 2009 Jan;22(1):1-7. doi: 10.1093/protein/gzn062. Epub 2008 Nov 5.
The intestinal guanylyl cyclase-C (GC-C) was originally identified as an Escherichia coli heat-stable enterotoxin (STa) receptor. STa stimulates GC-C to much higher activity than the endogenous ligands guanylin and uroguanylin, causing severe diarrhea. To investigate the interactions of the endogenous and bacterial ligands with GC-C, we designed and characterized a soluble and properly folded fragment of the extracellular ligand-binding domain of GC-C. The membrane-bound guanylyl cyclases exhibit a single transmembrane spanning helix and a globularly folded extracellular ligand-binding domain that comprises about 410 of 1050 residues. Based on the crystal structure of the dimerized-binding domain of the guanylyl cyclase-coupled atrial natriuretic peptide receptor and a secondary structure-guided sequence alignment, we generated a model of the extracellular domain of GC-C comprised of two subdomains. Mapping of mutational and cross-link data onto this structural model restricts the ligand-binding region to the membrane proximal subdomain. We thus designed miniGC-C, a 197 amino acid fragment that mimics the ligand-binding membrane proximal subdomain. Cloning, expression and spectroscopic studies reveal miniGC-C to be a soluble and properly folded protein with a distinct secondary and tertiary structure. MiniGC-C binds STa with nanomolar affinity.
肠道鸟苷酸环化酶-C(GC-C)最初被鉴定为大肠杆菌热稳定肠毒素(STa)的受体。与内源性配体鸟苷蛋白和尿鸟苷蛋白相比,STa刺激GC-C的活性要高得多,会导致严重腹泻。为了研究内源性和细菌配体与GC-C的相互作用,我们设计并表征了GC-C细胞外配体结合域的一个可溶且正确折叠的片段。膜结合鸟苷酸环化酶具有一个单一的跨膜螺旋和一个球状折叠的细胞外配体结合域,该结合域包含1050个残基中的约410个。基于鸟苷酸环化酶偶联心房钠尿肽受体二聚化结合域的晶体结构和二级结构引导的序列比对,我们构建了一个由两个亚结构域组成的GC-C细胞外结构域模型。将突变和交联数据映射到这个结构模型上,将配体结合区域限制在膜近端亚结构域。因此,我们设计了miniGC-C,这是一个197个氨基酸的片段,模拟配体结合的膜近端亚结构域。克隆、表达和光谱研究表明,miniGC-C是一种可溶且正确折叠的蛋白质,具有独特的二级和三级结构。MiniGC-C以纳摩尔亲和力结合STa。