Ajtai K, Ilich P J, Ringler A, Sedarous S S, Toft D J, Burghardt T P
Department of Biochemistry and Molecular Biology, Mayo Foundation, Rochester, Minnesota 55905.
Biochemistry. 1992 Dec 15;31(49):12431-40. doi: 10.1021/bi00164a019.
The labeling of muscle fiber proteins with iodoacetamido)tetramethylrhodamine (IATR) was reinvestigated with the purified 5' or 6' isomers of IATR. Both isomers modify the myosin heavy chain within the 20-kDa fragment of myosin subfragment 1 (S1) but with different rates, and only the 5'-IATR alters K(+)-EDTA- and Ca(2+)-activated ATPases. Absorption spectroscopic and ATPase studies of probe stoichiometry indicate that for 5'-IATR there are two probes per myosin sulfhydryl 1 (SH1). Quantitative fluorograms of the SDS-PAGE gels confirm that there are one covalent and one noncovalent probe per SH1 when S1 is labeled with 5'-IATR (5'-IATR-S1) and that there are one covalent and two noncovalent probes per S1 when S1 is labeled with 6'-IATR (6'-IATR-S1). The 5'- and 6'-IATR probes have similar fluorescent lifetimes when bound to S1, but quenching studies with potassium iodide show that 5'-IATR-S1 has a single class of strongly bound chromophores while 6'-IATR-S1 has two or more classes of chromophores. It is possible that 5'-IATR labels SH1 as a dimer. The polarization anisotropies of 5'- and 6'-IATR-S1 indicate that 5'-IATR is immobilized, while 6'-IATR is moving independently, on the surface of S1. The emission spectrum from 5'-IATR-S1 is unaffected by the addition of MgATP, while 6'-IATR-S1 shows a spectral shift and total intensity change. When labeling muscle fibers, 5'-IATR labels myosin SH1 and differentiates between the fiber physiological states by indicating cross-bridge rotation in quantitative agreement with previous results [Burghardt et al. (1983) Proc. Natl. Acad. Sci. U.S.A. 80, 7515]. 6'-IATR reacts preferentially with actin in muscle fibers and does not differentiate between fiber physiological states as expected for an actin probe. The stereospecificity of the rhodamine isomers for SH1 indicates features of the local protein structure. The experimental results are used with theoretical methods for determining molecular structure to suggest a qualitative scheme for the specific interaction of 5'-IATR with its binding pocket on the surface of S1.
使用碘乙酰胺基)四甲基罗丹明(IATR)的纯化5'或6'异构体对肌纤维蛋白的标记进行了重新研究。两种异构体都能修饰肌球蛋白亚片段1(S1)的20 kDa片段内的肌球蛋白重链,但修饰速率不同,并且只有5'-IATR会改变K(+)-EDTA和Ca(2+)激活的ATP酶。对探针化学计量的吸收光谱和ATP酶研究表明,对于5'-IATR,每个肌球蛋白巯基1(SH1)有两个探针。SDS-PAGE凝胶的定量荧光图证实,当S1用5'-IATR(5'-IATR-S1)标记时,每个SH1有一个共价探针和一个非共价探针,而当S1用6'-IATR(6'-IATR-S1)标记时,每个S1有一个共价探针和两个非共价探针。5'-和6'-IATR探针与S1结合时具有相似的荧光寿命,但用碘化钾进行的猝灭研究表明,5'-IATR-S1有一类强结合的发色团,而6'-IATR-S1有两类或更多类发色团。5'-IATR可能以二聚体形式标记SH1。5'-和6'-IATR-S1的偏振各向异性表明,5'-IATR在S1表面是固定的,而6'-IATR是独立移动的。5'-IATR-S1的发射光谱不受MgATP添加的影响,而6'-IATR-S1显示出光谱位移和总强度变化。在标记肌纤维时,5'-IATR标记肌球蛋白SH1,并通过指示横桥旋转来区分纤维的生理状态,这与之前的结果[Burghardt等人(1983年)《美国国家科学院院刊》80,7515]在数量上一致。6'-IATR在肌纤维中优先与肌动蛋白反应,并且不像肌动蛋白探针预期的那样区分纤维的生理状态。罗丹明异构体对SH1的立体特异性表明了局部蛋白质结构的特征。实验结果与用于确定分子结构的理论方法一起用于提出5'-IATR与其在S1表面的结合口袋特异性相互作用的定性方案。