Programa de Biologia Estrutural, Instituto de Bioquímica Médica, Instituto Nacional de Biologia Estrutural e Bioimagem, Centro Nacional de Ressonância Magnética Nuclear Jiri Jonas, Universidade Federal do Rio de Janeiro, 21941-902 Rio de Janeiro, Brazil.
Biochemistry. 2013 Jan 8;52(1):28-40. doi: 10.1021/bi301139d. Epub 2012 Dec 19.
Troponin C (TnC), the Ca(2+)-binding component of the troponin complex of vertebrate skeletal muscle, consists of two structurally homologous domains, the N- and C-domains; these domains are connected by an exposed α-helix. Mutants of full-length TnC and of its isolated domains have been constructed using site-directed mutagenesis to replace different Phe residues with Trp. Previous studies utilizing these mutants and high hydrostatic pressure have shown that the apo form of the C-domain is less stable than the N-domain and that the N-domain has no effect on the stability of the C-domain [Rocha, C. B., Suarez, M. C., Yu, A., Ballard, L., Sorenson, M. M., Foguel, D., and Silva, J. L. (2008) Biochemistry 47, 5047-5058]. Here, we analyzed the stability of full-length F29W TnC using structural approaches under conditions of added urea and hydrostatic pressure denaturation; F29W TnC is a fluorescent mutant, in which Phe 29, located in the N-domain, was replaced with Trp. From these experiments, we calculated the thermodynamic parameters (ΔV and ΔG°(atm)) that govern the folding of the intact F29W TnC in the absence or presence of Ca(2+). We found that the C-domain has only a small effect on the structure of the N-domain in the absence of Ca(2+). However, using fluorescence spectroscopy, we demonstrated a significant decrease in the stability of the N-domain in the Ca(2+)-bound state (i.e., when Ca(2+) was also bound to sites III and IV of the C-domain). An accompanying decrease in the thermodynamic stability of the N-domain generated a reduction in ΔΔG°(atm) in absolute terms, and Ca(2+) binding affects the Ca(2+) affinity of the N-domain in full-length TnC. Cross-talk between the C- and N-domains may be mediated by the central helix, which has a smaller volume and likely greater rigidity and stability following binding of Ca(2+) to the EF-hand sites, as determined by our construction of low-resolution three-dimensional models from the small-angle X-ray scattering data.
肌钙蛋白 C(TnC)是脊椎动物骨骼肌肌钙蛋白复合物的 Ca2+结合成分,由两个结构同源的结构域组成,即 N 结构域和 C 结构域;这两个结构域通过暴露的α-螺旋连接。使用定点突变构建了全长 TnC 及其分离结构域的突变体,以用色氨酸替换不同的苯丙氨酸残基。以前的研究利用这些突变体和高静水压力表明,C 结构域的脱辅基形式不如 N 结构域稳定,并且 N 结构域对 C 结构域的稳定性没有影响[Rocha,C.B.,Suarez,M.C.,Yu,A.,Ballard,L.,Sorenson,M.M.,Foguel,D.,和 Silva,J.L.(2008)生物化学47,5047-5058]。在这里,我们使用结构方法分析了添加脲和静水压力变性条件下全长 F29W TnC 的稳定性;F29W TnC 是一种荧光突变体,其中位于 N 结构域的苯丙氨酸 29 被色氨酸取代。从这些实验中,我们计算了在没有 Ca2+的情况下控制完整 F29W TnC 折叠的热力学参数(ΔV 和 ΔG°(atm))。我们发现,在没有 Ca2+的情况下,C 结构域对 N 结构域的结构只有很小的影响。然而,使用荧光光谱法,我们证明了当 Ca2+也结合到 C 结构域的 III 和 IV 位点时,N 结构域的稳定性显著降低(即在 Ca2+结合状态下)。N 结构域热力学稳定性的伴随降低导致在绝对值上降低了 ΔΔG°(atm),并且 Ca2+结合会影响全长 TnC 中 N 结构域的 Ca2+亲和力。C 结构域和 N 结构域之间的串扰可能由中心螺旋介导,该螺旋在结合 Ca2+到 EF 手位点后具有较小的体积,并且可能具有更大的刚性和稳定性,这是通过从小角度 X 射线散射数据构建低分辨率三维模型确定的。