Chen Zi-Jiang, Vetter Michael, Chang Geen-Dong, Liu Shiguo, Che Danian, Ding Yaxian, Kim Sung Soo, Chang Chung-Ho
Department of Medicine, Case Western Reserve University and University Hospital of Cleveland, Ohio, USA.
Hypertension. 2004 Dec;44(6):963-8. doi: 10.1161/01.HYP.0000145859.94894.23. Epub 2004 Oct 4.
Cyclophilin A (CypA), a receptor for the immunosuppressive agent cyclosporin A, is a cis-trans-peptidyl-prolyl isomerase (PPIase). It accelerates the cis-trans isomerization of prolyl-peptide bonds. CypA binds and regulates the activity of a variety of proteins. Atrial natriuretic factor (ANF) and its receptor membrane-bound guanylate cyclase-A (GC-A) are involved in the regulation of blood pressure. We examined whether CypA affects the activation of GC-A by ANF. The results showed that CypA associated with GC-A. Interestingly, binding of ANF to GC-A released CypA. Transfection of CypA inhibited ANF-stimulated GC-A activity, indicating that CypA functions as an endogenous inhibitor for GC-A activation. CypA also inhibits the activity of guanylate cyclase-C (GC-c), the catalytic domain of GC-A, indicating that CypA interacts with the catalytic domain of GC-A. In contrast, transfection of CypA R55A, a CypA mutant expressing low PPIase activity, did not significantly attenuate the activity of GC-c and the activation of GC-A. Inhibition of PPIase activity of CypA with cyclosporin A also blocks the inhibitory effect of CypA on GC-c activity. These results demonstrate that PPIase activity is required for CypA to inhibit GC-c activity and GC-A activation by ANF. Furthermore, mutation of Pro 822, 902, or 958 in GC-c abolished its activity. Therefore, it is likely that CypA binds to GC-A and catalyzes the cis-trans isomerization of Pro 822, 902, or 958, which keeps GC-A in the inactive state, and that binding of ANF to GC-A alters the conformation of the catalytic domain that releases CypA from GC-A leading to enzyme activation.
亲环素A(CypA)是免疫抑制剂环孢素A的一种受体,是一种顺反肽基脯氨酰异构酶(PPIase)。它能加速脯氨酰肽键的顺反异构化。CypA能结合并调节多种蛋白质的活性。心房利钠因子(ANF)及其受体膜结合鸟苷酸环化酶A(GC-A)参与血压调节。我们研究了CypA是否影响ANF对GC-A的激活。结果表明,CypA与GC-A相关。有趣的是,ANF与GC-A的结合会释放CypA。转染CypA可抑制ANF刺激的GC-A活性,表明CypA作为GC-A激活的内源性抑制剂发挥作用。CypA还抑制鸟苷酸环化酶C(GC-c)的活性,即GC-A的催化结构域,表明CypA与GC-A的催化结构域相互作用。相比之下,转染低PPIase活性的CypA突变体CypA R55A并没有显著减弱GC-c的活性和GC-A的激活。用环孢素A抑制CypA的PPIase活性也会阻断CypA对GC-c活性的抑制作用。这些结果表明,CypA抑制GC-c活性和ANF激活GC-A需要PPIase活性。此外,GC-c中Pro 822、902或958的突变使其活性丧失。因此,CypA可能与GC-A结合并催化Pro 822、902或958的顺反异构化,从而使GC-A保持无活性状态,而ANF与GC-A的结合会改变催化结构域的构象,使CypA从GC-A上释放,导致酶激活。