Bennett A J, Patel N, Wells C, Bagshaw C R
J Muscle Res Cell Motil. 1984 Apr;5(2):165-82. doi: 10.1007/BF00712154.
Regulatory light chain (RLC) dissociation from scallop myofibrils, myosin or its subfragments was accompanied by an increase in binding of the hydrophobic fluorophore, 8-anilino-1-naphthalene-sulphonate (ANS) to the denuded proteins. The binding was monitored by the large increase in fluorescence emission at 460 nm when excited directly at 380 nm or via energy transfer from nearby tryptophan residues at 295 nm. ANS thus provides a convenient probe for following the kinetics of RLC dissociation in the presence of EDTA and its association in the presence of divalent metal ions. The observed RLC dissociation rate constant for myosin at 20 degrees C was 7.5 X 10(-3)S-1. The association rate constant, which was independent of the RLC concentration, was 5 X 10(-3) S-1. Subfragment 1, prepared by digestion of myosin in the presence of divalent metal ions to protect the light chains [S1(+LC)], showed reversible ANS binding qualitatively similar to the parent molecule. However when prepared in the presence of EDTA, subfragment 1 lacked RLC [S1(-LC)], its heavy chain molecular weight was reduced by about 4000 and it lacked the ANS binding region attributed to the RLC site. The tryptic digestion pattern of of S1(+LC) and S1(-LC) suggested that the 4000 difference peptide is at the C-terminus. Tryptic digestion of S1(+LC) has been shown to lead to the production of a regulatory peptide, comprising the two light chains and a heavy chain fragment, which displayed reversible ANS binding on addition of EDTA. Evidence is presented which suggests that this domain is at the C-terminus of subfragment 1.
扇贝肌原纤维、肌球蛋白或其亚片段中的调节性轻链(RLC)解离时,疏水性荧光团8-苯胺基-1-萘磺酸盐(ANS)与裸露的蛋白质的结合会增加。当在380nm直接激发或通过295nm附近色氨酸残基的能量转移激发时,通过460nm处荧光发射的大幅增加来监测这种结合。因此,ANS为追踪在EDTA存在下RLC解离的动力学及其在二价金属离子存在下的缔合提供了一种方便的探针。在20℃下观察到的肌球蛋白的RLC解离速率常数为7.5×10⁻³s⁻¹。缔合速率常数与RLC浓度无关,为5×10⁻³s⁻¹。在二价金属离子存在下消化肌球蛋白以保护轻链制备的亚片段1 [S1(+LC)],显示出与亲本分子定性相似的可逆ANS结合。然而,当在EDTA存在下制备时,亚片段1缺乏RLC [S1(-LC)],其重链分子量降低了约4000,并且它缺乏归因于RLC位点的ANS结合区域。S1(+LC)和S1(-LC)的胰蛋白酶消化模式表明,4000差异肽位于C末端。已证明S1(+LC)的胰蛋白酶消化会产生一种调节肽,其由两条轻链和一个重链片段组成,在加入EDTA时显示出可逆的ANS结合。有证据表明该结构域位于亚片段1的C末端。