Mills J S, Walsh M P, Nemcek K, Johnson J D
Department of Physiological Chemistry, Ohio State University Medical Center, Columbus 43210.
Biochemistry. 1988 Feb 9;27(3):991-6. doi: 10.1021/bi00403a023.
Spinach calmodulin (CaM) has been labeled at cysteine-26 with the sulfhydryl-selective probe 2-(4-maleimidoanilino)naphthalene-6-sulfonic acid (MIANS) to produce MIANS-CaM. The interaction of MIANS-CaM with CaM binding proteins was studied by fluorescence enhancement accompanying the protein-protein interactions. MIANS-CaM bound to smooth muscle myosin light-chain kinase with a Kd of 9 nM, causing a 4.6-fold fluorescence enhancement. Caldesmon bound with a Kd of 250 nM, causing a 2-fold fluorescence enhancement. Calcineurin (CaN) bound to MIANS-CaM with a Kd less than 5 nM, causing an 80% increase in fluorescence. On the other hand, binding of the CaM antagonist drugs prenylamine and calmidazolium or the potent peptide antagonist melittin did not alter MIANS fluorescence. MIANS-CaM activated brain cGMP phosphodiesterase and CaN as effectively as unlabeled CaM. Spinach CaM was also labeled with three other sulfhydryl reagents, 6-acryloyl-2-(dimethylamino)naphthalene, (2,5-dimethoxy-4-stilbenyl)maleimide, and rhodamine X maleimide. CaN bound to the highly fluorescent rhodamine X maleimidyl-CaM with a Kd of 1.4 nM, causing a 25% increase in polarization. Both MIANS-CaM and rhodamine X-CaM were used to monitor the Ca2+ dependence of the interaction between CaM and CaN. Half-maximal binding occurred at pCa 6.7-6.8 in the absence of Mg2+, or at pCa 6.3 in the presence of 3 mM Mg2+. In both cases, the dependence of the interaction was cooperative with respect to Ca2+ (Hill coefficients of 1.7-2.0). Use of these fluorescent CaMs should allow accurate monitoring of CaM interactions with its target proteins and perhaps their localization within the cell.
菠菜钙调蛋白(CaM)已在半胱氨酸-26处用巯基选择性探针2-(4-马来酰亚胺基苯胺基)萘-6-磺酸(MIANS)进行标记,以产生MIANS-CaM。通过伴随蛋白质-蛋白质相互作用的荧光增强来研究MIANS-CaM与CaM结合蛋白的相互作用。MIANS-CaM与平滑肌肌球蛋白轻链激酶结合,解离常数(Kd)为9 nM,导致荧光增强4.6倍。钙调蛋白与MIANS-CaM结合,Kd为250 nM,导致荧光增强2倍。钙调神经磷酸酶(CaN)与MIANS-CaM结合,Kd小于5 nM,导致荧光增加80%。另一方面,CaM拮抗剂药物普尼拉明和平米氮唑或强效肽拮抗剂蜂毒肽的结合并未改变MIANS荧光。MIANS-CaM激活脑cGMP磷酸二酯酶和CaN的效果与未标记的CaM一样有效。菠菜CaM也用其他三种巯基试剂进行标记,即6-丙烯酰基-2-(二甲基氨基)萘、(2,5-二甲氧基-4-苯乙烯基)马来酰亚胺和罗丹明X马来酰亚胺。CaN与高荧光的罗丹明X马来酰亚胺基-CaM结合,Kd为1.4 nM,导致偏振增加25%。MIANS-CaM和罗丹明X-CaM均用于监测CaM与CaN之间相互作用对Ca2+的依赖性。在不存在Mg2+的情况下,半最大结合发生在pCa 6.7-6.8时,或在存在3 mM Mg2+的情况下,半最大结合发生在pCa 6.3时。在这两种情况下,相互作用对Ca2+的依赖性都是协同的(希尔系数为1.7-2.0)。使用这些荧光CaM应该能够准确监测CaM与其靶蛋白的相互作用,甚至可能监测它们在细胞内的定位。