Steiner R F, Albaugh S, Nenortas E, Norris L
Department of Chemistry and Biochemistry, University of Maryland, Baltimore 21228.
Biopolymers. 1992 Jan;32(1):73-83. doi: 10.1002/bip.360320110.
The cationic dye auramine O forms a fluorescent complex with Ca(2+)-liganded calmodulin. One moderately strong binding site is present, as well as one or more weaker sites. The binding site for auramine O is different from those for toluidinyl-naphthalene sulfonate. The dependence of binding upon electrolyte concentration suggests a substantial electrostatic component of the free energy of binding. The splitting of the bond between residues 77 and 78 by trypsin digestion abolishes auramine O binding; the N- and C-terminal half-molecules have virtually no binding capacity. This suggests that the primary binding site is located near the midpoint of the connecting strand and includes elements of both half-molecules. Thrombin digestion, which splits calmodulin between residues 106 and 107, also substantially reduces auramine O binding; this may be interpreted in terms of the stabilization of the structure of the connecting strand by interaction with residues within binding domain IV. The binding affinity at pH 5.0, where the helical organization of the connecting strand may be intact, is greater than at neutral pH.
阳离子染料金胺O与Ca(2+)结合的钙调蛋白形成荧光复合物。存在一个中等强度的结合位点以及一个或多个较弱的位点。金胺O的结合位点与甲苯胺基萘磺酸盐的不同。结合对电解质浓度的依赖性表明结合自由能存在大量静电成分。胰蛋白酶消化使77和78位残基之间的键断裂,从而消除了金胺O的结合;N端和C端半分子几乎没有结合能力。这表明主要结合位点位于连接链中点附近,并且包括两个半分子的元件。凝血酶消化在106和107位残基之间切割钙调蛋白,也显著降低了金胺O的结合;这可以通过与结合结构域IV内的残基相互作用来稳定连接链的结构来解释。在pH 5.0时,连接链的螺旋结构可能完整,其结合亲和力大于中性pH时的结合亲和力。