Kuo I C, Coffee C J
J Biol Chem. 1976 Oct 25;251(20):6315-9.
A high affinity calcium-binding protein has recently been purified from the adrenal medulla (Kuo, I.C.Y., and Coffee, C.J. (1976) J. Biol. Chem. 251, 1603-1609). This protein is closely related in its chemical and physical properties to troponin-C (TN-C) of muscle tissue. Further examination of the adrenal medulla protein indicates that the removal of calcium is accompanied by a marked change in the conformation. This change in structure is similar, if not identical, to the calcium-dependent conformational change which has been described for skeletal muscle TN-C (Murray, A.C., and Kay, C.M. (1972) Biochemistry 11, 2622). The far ultraviolet circular dichroism spectrum of native adrenal medulla calcium-binding protein (AM-CBP) shows characteristic helical ellipticity bands at 222 and 207 nm. The helical content, as estimated from these data, is between 40 and 45%. Removal of calcium is accompanied by a change in ellipticity which corresponds to a decrease from 40 to 20% in the helical content. The near-ultraviolet circular dichroism spectrum shows negative dichroic bands at 262 and 268 nm which are characteristic of phenylalanine. These bands are relatively insensitive to changes in the calcium ion concentration. Sedimentation velocity studies likewise are indicative of a calcium-dependent structural alteration. The sedimentation coefficient of the native protein was observed to be 1.89 S. Similar measurements performed in the presence of 3 mM ethylene glycol bis(beta-aminoethyl ether) N,N, N', N'-tetraacetic acid (EGTA) gave a sedimentation coefficient of 1.50 S. The molecular weight, as determined by sedimentation equilibrium studies, was 16,000 regardless of whether the measurements were made in the presence of CaCl2 or EGTA. From the elution properties of AM-CBP on Sephadex G-100, the Stokes radius was observed to be 19.8 A in the presence of calcium and 21.9 A in the presence of EGTA. All of these changes which were induced by the addition of EGTA were completely reversible by the readdition of excess CaCl2. These data suggest that the removal of calcium from AM-CBP is accompanied by a pronounced conformational change which occurs without a molecular weight change. The decreased sedimentation coefficient, the increased Stokes radius, and the reduced helical content, which are observed for the apoprotein, indicate that removal of calcium results in a transformation from a compact symmetrical structure to one that is less ordered and more asymmetrical.
最近从肾上腺髓质中纯化出了一种高亲和力钙结合蛋白(郭,I.C.Y.,和科菲,C.J.(1976年)《生物化学杂志》251卷,1603 - 1609页)。这种蛋白质在化学和物理性质上与肌肉组织的肌钙蛋白C(TN - C)密切相关。对肾上腺髓质蛋白的进一步研究表明,钙的去除伴随着构象的显著变化。这种结构变化即使不完全相同,也与已描述的骨骼肌TN - C的钙依赖性构象变化相似(默里,A.C.,和凯,C.M.(1972年)《生物化学》11卷,2622页)。天然肾上腺髓质钙结合蛋白(AM - CBP)的远紫外圆二色光谱在222和207纳米处显示出特征性的螺旋椭圆率带。根据这些数据估计,螺旋含量在40%至45%之间。钙的去除伴随着椭圆率的变化,这对应于螺旋含量从40%降至20%。近紫外圆二色光谱在262和268纳米处显示出负二色性带,这是苯丙氨酸的特征。这些带对钙离子浓度的变化相对不敏感。沉降速度研究同样表明存在钙依赖性结构改变。观察到天然蛋白的沉降系数为1.89 S。在3 mM乙二醇双(β - 氨基乙基醚)N,N,N',N' - 四乙酸(EGTA)存在下进行的类似测量得到的沉降系数为1.50 S。通过沉降平衡研究确定的分子量为16,000,无论测量是在CaCl2存在下还是在EGTA存在下进行。从AM - CBP在Sephadex G - 100上的洗脱特性来看,在钙存在下斯托克斯半径为19.8 Å,在EGTA存在下为21.9 Å。添加EGTA引起的所有这些变化通过重新添加过量的CaCl2完全可逆。这些数据表明,从AM - CBP中去除钙伴随着明显的构象变化,且这种变化发生时分子量不变。对于脱辅基蛋白观察到的沉降系数降低、斯托克斯半径增加和螺旋含量减少,表明钙的去除导致从紧密对称结构转变为无序且更不对称的结构。