Shirinsky V P, Vorotnikov A V, Birukov K G, Nanaev A K, Collinge M, Lukas T J, Sellers J R, Watterson D M
Laboratory of Molecular Endocrinology, Russian Academy of Medical Sciences, Moscow.
J Biol Chem. 1993 Aug 5;268(22):16578-83.
An apparent paradox in smooth muscle biology is the ability of unphosphorylated myosin to maintain a filamentous structure in the presence of ATP in vivo, whereas unphosphorylated myosin filaments are depolymerized in vitro in the presence of ATP. This suggests that additional uncharacterized factors are required for the stabilization of myosin filaments in the presence of ATP. We report here that an abundant smooth muscle protein forms sedimentable complexes with unphosphorylated smooth muscle myosin, partially reverses the depolymerizing effect of ATP on unphosphorylated myosin, and promotes the assembly of minifilaments as revealed by electron microscopy. This protein is called kinase-related protein (KRP) because it is derived from a gene within the gene for myosin light chain kinase (MLCK) and has an amino acid sequence identical to the carboxyl-terminal domain of MLCK. Consistent with the results with purified KRP, deletion of the KRP domain within MLCK results in a diminished ability of MLCK to interact with unphosphorylated myosin. KRP binds to the heavy meromyosin fragment of myosin but not to myosin rod or fragments lacking the hinge region and light chains. Altogether, these results suggest that KRP may play a critical role in stabilizing unphosphorylated myosin filaments and that the KRP domain of MLCK may be important for subcellular targeting to filaments.
平滑肌生物学中一个明显的悖论是,在体内ATP存在的情况下,未磷酸化的肌球蛋白能够维持丝状结构,而在体外,未磷酸化的肌球蛋白丝在ATP存在时会解聚。这表明在ATP存在的情况下,需要其他未被鉴定的因子来稳定肌球蛋白丝。我们在此报告,一种丰富的平滑肌蛋白与未磷酸化的平滑肌肌球蛋白形成可沉降的复合物,部分逆转了ATP对未磷酸化肌球蛋白的解聚作用,并促进了微丝的组装,这在电子显微镜下得以揭示。这种蛋白质被称为激酶相关蛋白(KRP),因为它源自肌球蛋白轻链激酶(MLCK)基因内的一个基因,并且其氨基酸序列与MLCK的羧基末端结构域相同。与纯化的KRP的结果一致,MLCK内KRP结构域的缺失导致MLCK与未磷酸化肌球蛋白相互作用的能力减弱。KRP与肌球蛋白重酶解肌球蛋白片段结合,但不与肌球蛋白杆或缺乏铰链区和轻链的片段结合。总之,这些结果表明KRP可能在稳定未磷酸化的肌球蛋白丝方面起关键作用,并且MLCK的KRP结构域可能对亚细胞靶向到丝状物很重要。