Filenko A M, Sobieszek A
Taras Shevchenko Kiev University, Institute of Physiology.
Ukr Biokhim Zh (1978). 1998 May-Jun;70(3):39-43.
Phosphorylation of myosin regulatory light chain (RLC) catalysed by myosin light chain kinase (MLCK) is a key reaction in the regulation of actin-myosin interaction in smooth muscle. The activation of MLCK by calmodulin (CaM) and Ca2+ was investigated over a wide range of the enzyme concentrations using myosin or its RLC with Mw = 20 kDa as substrates. Kinase activation by CaM (at saturating Ca2+ concentrations) was characterized by positive cooperativity even though noncooperative activation would be expected from the established 1:1 binding stoichiometry between MLCK and CaM. The activation of the kinase by Ca2+ was also cooperative but only at relatively low CaM levels. This cooperativity was shown to result from time dependent changes in MLCK that take place during its incubation with Ca2+ and CaM before substrate addition in phosphorylation assays. As a result the kinase activity as a function of its concentration at constant CaM level was biphasic: there was the activity optimum at 1:1 ratio of CaM to MLCK and almost complete inhibition at 3 to 7 molar excess of kinase over CaM. Such changes that take place during 10 to 15 min preincubation with Ca2+ and CaM may involve the kinase supramolecular structure formation or/and its conformational rearrangements.
肌球蛋白轻链激酶(MLCK)催化的肌球蛋白调节轻链(RLC)磷酸化是平滑肌中肌动蛋白-肌球蛋白相互作用调节的关键反应。使用肌球蛋白或其分子量为20 kDa的RLC作为底物,在广泛的酶浓度范围内研究了钙调蛋白(CaM)和Ca2+对MLCK的激活作用。即使根据MLCK与CaM之间已确定的1:1结合化学计量比预期为非协同激活,但在饱和Ca2+浓度下,CaM对激酶的激活表现出正协同性。Ca2+对激酶的激活也是协同的,但仅在相对较低的CaM水平下。这种协同性被证明是由于在磷酸化测定中添加底物之前,MLCK与Ca2+和CaM孵育期间发生的时间依赖性变化所致。因此,在恒定CaM水平下,激酶活性作为其浓度的函数是双相的:在CaM与MLCK的比例为1:1时存在活性最佳值,而当激酶相对于CaM的摩尔过量为3至7时几乎完全抑制。在与Ca2+和CaM预孵育10至15分钟期间发生的这种变化可能涉及激酶超分子结构的形成或/及其构象重排。