Levistkiĭ D I, Borovikov Iu S, Nikolaeva O P, Golitsyna N L, Poglazov B F
Biokhimiia. 1990 Sep;55(9):1690-9.
At low ionic strength (7-25 mM) Mg2(+)-ATPase of myosin subfragment 1 (S1) isoforms containing alkali light chain A1 [S1(A1)] is activated by actin 1.5-2.5 times as strongly as Mg2(+)-ATPase of S1 isoforms containing alkali light chain A2[S1(A2)]. Data from analytical ultracentrifugation suggest that at low ionic strength in the absence of ATP in solution S1(A1) displays a higher affinity for F-actin than S1(A2). Such a higher affinity of S1(A1) for F-actin was also demonstrated by experiments, in which the interaction of S1 isoforms fluorescently labeled by 1.5-IAEDANS with F-actin of ghost fibers (single glycerinated muscle fibers containing F-actin but devoid of myosin) was studied. Using polarization microfluorimetry, it was shown that the interaction of both S1 isoforms with ghost fiber F-actin induces similar changes in the parameters of polarized tryptophan fluorescence. At the same time the mobility of the fluorescent probe, 1.5-IAEDANS, specifically attached to the SH-group of Cys-374 in the C-terminal region of action is markedly decreased by S1(A1) and is only slightly affected by S1(A2). The data obtained suggest that S1(A1) and S1(A2) interact with the C-terminal region of the actin molecule in different ways, i.e. S1(A1) is attached more firmly than S1(A2). This may be due to the existence of contacts between the alkali light chain of A1 of S1(A1) and the C-terminal region of actin as well as to the absence of such contacts in the case of S1(A2).
在低离子强度(7 - 25 mM)下,含有碱性轻链A1的肌球蛋白亚片段1(S1)同工型[即S1(A1)]的Mg2(+)-ATP酶被肌动蛋白激活的程度,是含有碱性轻链A2的S1同工型[即S1(A2)]的Mg2(+)-ATP酶的1.5至2.5倍。分析超速离心的数据表明,在溶液中不存在ATP的低离子强度条件下,S1(A1)对F-肌动蛋白的亲和力高于S1(A2)。通过实验也证实了S1(A1)对F-肌动蛋白具有更高的亲和力,这些实验研究了用1.5-IAEDANS荧光标记的S1同工型与鬼纤维(仅含F-肌动蛋白而不含肌球蛋白的单根甘油化肌纤维)的F-肌动蛋白之间的相互作用。使用偏振显微荧光测定法表明两种S1同工型与鬼纤维F-肌动蛋白的相互作用均会引起色氨酸偏振荧光参数的相似变化。同时,特异性附着于肌动蛋白C末端区域中Cys-374的SH基团上的荧光探针1.5-IAEDANS的移动性,被S1(A1)显著降低,而仅受到S1(A2)的轻微影响。所获得的数据表明,S1(A1)和S1(A2)以不同方式与肌动蛋白分子的C末端区域相互作用,即S1(A1)比S1(A2)结合得更牢固。这可能是由于S1(A1)的A1碱性轻链与肌动蛋白的C末端区域之间存在接触,而S1(A2)则不存在这种接触。