Zhao Y, Hoganson C, Babcock G T, Marletta M A
Department of Biological Chemistry, School of Medicine, Howard Hughes Medical Institute, The University of Michigan, Ann Arbor 48109-1065, USA.
Biochemistry. 1998 Sep 8;37(36):12458-64. doi: 10.1021/bi9811563.
When expressed in Escherichia coli, the heme domain [beta1(1-385)] of rat lung soluble guanylate cyclase (sGC) is isolated with a stoichiometric amount of bound heme [Zhao, Y., and Marletta, M. A. (1997) Biochemistry 36, 15959-15964]. Nitric oxide (NO) binding to the heme in beta1(1-385) leads to cleavage of the Fe-His bond and formation of a five-coordinate NO-heme complex. Addition of imidazole to the five-coordinate NO complex shifts the Soret peak from 399 to 420 nm, which appears to result from the formation of a six-coordinate NO complex. Removal of the added imidazole by gel filtration results in formation of the five-coordinate NO complex once again. The EPR spectrum of the putative six-coordinate NO complex has nine distinct derivative-shaped lines (a triplet of triplets), which is the signature spectrum of a six-coordinate NO complex with two nitrogen atoms as the axial ligands. [15N]Imidazole simplifies the six-coordinate NO complex EPR spectrum to six distinct derivative-shaped lines (a triplet of doublets), indicating that the other axial ligand in the six-coordinate NO complex is an imidazole molecule. These results show that NO binding to sGC not only leads to the cleavage of the Fe-His bond but also induces a conformational change which opens the heme proximal pocket large enough to accommodate an exogenous imidazole molecule. These observations have important implications for determining the NO activation mechanism of sGC.
当在大肠杆菌中表达时,大鼠肺可溶性鸟苷酸环化酶(sGC)的血红素结构域[β1(1 - 385)]会与化学计量的结合血红素一起分离出来[赵,Y.,和马莱塔,M. A.(1997年)《生物化学》36,15959 - 15964]。一氧化氮(NO)与β1(1 - 385)中的血红素结合会导致Fe - His键断裂,并形成五配位的NO - 血红素复合物。向五配位的NO复合物中加入咪唑会使Soret峰从399 nm移至420 nm,这似乎是由于形成了六配位的NO复合物。通过凝胶过滤去除添加的咪唑会再次形成五配位的NO复合物。假定的六配位NO复合物的电子顺磁共振(EPR)谱有九条不同的导数形状的线(一个三重态的三重态),这是具有两个氮原子作为轴向配体的六配位NO复合物的特征谱。[15N]咪唑将六配位NO复合物的EPR谱简化为六条不同的导数形状的线(一个三重态的二重态),表明六配位NO复合物中的另一个轴向配体是一个咪唑分子。这些结果表明,NO与sGC的结合不仅导致Fe - His键的断裂,还诱导了一种构象变化,使血红素近端口袋打开到足以容纳一个外源性咪唑分子的大小。这些观察结果对于确定sGC的NO激活机制具有重要意义。