Gribovskaja Irena, Brownlow Kaleb C, Dennis Sam J, Rosko Andrew J, Marletta Michael A, Stevens-Truss Regina
Department of Chemistry, Kalamazoo College, Kalamazoo, Michigan 49006, USA.
Biochemistry. 2005 May 24;44(20):7593-601. doi: 10.1021/bi0474517.
Like that of the neuronal nitric oxide synthase (nNOS), the binding of Ca(2+)-bound calmodulin (CaM) also regulates the activity of the inducible isoform (iNOS). However, the role of each of the four Ca(2+)-binding sites of CaM in the activity of iNOS is unclear. Using a series of single-point mutants of Drosophila melanogaster CaM, the effect that mutating each of the Ca(2+)-binding sites plays in the transfer of electrons within iNOS has been examined. The same Glu (E) to Gln (Q) mutant series of CaM used previously [Stevens-Truss, R., Beckingham, K., and Marletta, M. A. (1997) Biochemistry 36, 12337-12345] to study the role of the Ca(2+)-binding sites in the activity of nNOS was used for these studies. We demonstrate here that activity of iNOS is dependent on Ca(2+) being bound to sites II (B2Q) and III (B3Q) of CaM. Nitric oxide (()NO) producing activity (as measured using the hemoglobin assay) of iNOS bound to the B2Q and B3Q CaMs was found to be 41 and 43% of the wild-type activity, respectively. The site I (B1Q) and site IV (B4Q) CaM mutants only minimally affected ()NO production (95 and 90% of wild-type activity, respectively). These results suggest that NOS isoforms, although all possessing a prototypical CaM binding sequence and requiring CaM for activity, interact with CaM differently. Moreover, iNOS activation by CaM, like nNOS, is not dependent on Ca(2+) being bound to all four Ca(2+)-binding sites, but has specific and distinct requirements. This novel information, in addition to helping us understand NOS, should aid in our understanding of CaM target activation.
与神经元型一氧化氮合酶(nNOS)类似,钙结合钙调蛋白(CaM)的结合也调节诱导型同工酶(iNOS)的活性。然而,CaM的四个钙结合位点中每个位点在iNOS活性中的作用尚不清楚。利用一系列黑腹果蝇CaM的单点突变体,研究了每个钙结合位点突变在iNOS内电子转移中所起的作用。这些研究使用了先前[Stevens-Truss, R., Beckingham, K., and Marletta, M. A. (1997) Biochemistry 36, 12337-12345]用于研究钙结合位点在nNOS活性中作用的相同的从谷氨酸(E)到谷氨酰胺(Q)的CaM突变体系列。我们在此证明,iNOS的活性依赖于钙与CaM的位点II(B2Q)和位点III(B3Q)结合。发现与B2Q和B3Q CaM结合的iNOS产生一氧化氮(·NO)的活性(使用血红蛋白测定法测量)分别为野生型活性的41%和43%。位点I(B1Q)和位点IV(B4Q)的CaM突变体对·NO产生的影响最小(分别为野生型活性的95%和90%)。这些结果表明,一氧化氮合酶同工型虽然都具有典型的CaM结合序列且活性需要CaM,但与CaM的相互作用方式不同。此外,CaM对iNOS的激活与nNOS一样,不依赖于钙与所有四个钙结合位点结合,而是有特定且不同的要求。这一新颖信息除了有助于我们理解一氧化氮合酶外,还应有助于我们理解CaM靶标的激活。