Kwon H, Goodwin E B, Nyitray L, Berliner E, O'Neall-Hennessey E, Melandri F D, Szent-Györgyi A G
Department of Biology, Brandeis University, Waltham, MA 02254.
Proc Natl Acad Sci U S A. 1990 Jun;87(12):4771-5. doi: 10.1073/pnas.87.12.4771.
The regulatory domain of scallop myosin, consisting of a regulatory light chain (R-LC), an essential light chain (E-LC), and a portion of heavy chain, occupies the neck region of myosin. This domain is directly involved in the regulation of molluscan muscle contraction, which is triggered by direct Ca2+ binding to myosin. We have isolated a soluble functional complex (regulatory complex) comprised of R-LC, E-LC, and a 10-kDa heavy chain fragment in a 1:1:1 stoichiometry by clostripain digestion of the myosin head (papain subfragment 1). N termini of the heavy chain fragments were either leucine-812 or valine-817. The isolated complex retained the specific Ca2(+)-binding site and bound Ca2+ with a similar affinity and selectivity as myosin. The individual components of the regulatory complex were isolated after complete denaturation with guanidine hydrochloride. The regulatory complex was reconstituted from isolated light chains and the heavy chain fragment. The renatured complex regained Ca2+ binding quantitatively. To elucidate the function of the E-LC in Ca2+ binding, we constructed hybrid regulatory complexes. The hybrid complexes reconstituted with molluscan E-LC and R-LC regained the specific Ca2(+)-binding site, whereas the hybrid complex formed with rabbit skeletal E-LC [alkali LC 2 (A2-LC)] and scallop R-LC did not. The results demonstrate that E-LCs from myosins regulated by direct Ca2+ binding are required for the specific Ca2+ binding in the molluscan muscle.
扇贝肌球蛋白的调节结构域由一条调节轻链(R-LC)、一条必需轻链(E-LC)和一部分重链组成,占据肌球蛋白的颈部区域。该结构域直接参与软体动物肌肉收缩的调节,这种调节由Ca2+直接结合到肌球蛋白上触发。我们通过用梭菌蛋白酶消化肌球蛋白头部(木瓜蛋白酶亚片段1),以1:1:1的化学计量比分离出了一种由R-LC、E-LC和一个10 kDa重链片段组成的可溶性功能复合物(调节复合物)。重链片段的N端要么是亮氨酸-812,要么是缬氨酸-817。分离出的复合物保留了特定的Ca2(+)-结合位点,并且以与肌球蛋白相似的亲和力和选择性结合Ca2+。在用盐酸胍完全变性后,分离出调节复合物的各个组分。调节复合物由分离出的轻链和重链片段重新组装而成。复性后的复合物定量地恢复了Ca2+结合能力。为了阐明E-LC在Ca2+结合中的功能,我们构建了杂交调节复合物。用软体动物的E-LC和R-LC重新组装的杂交复合物恢复了特定的Ca2(+)-结合位点,而用兔骨骼肌E-LC [碱性轻链2(A2-LC)]和扇贝R-LC形成的杂交复合物则没有。结果表明,直接由Ca2+结合调节的肌球蛋白中的E-LC是软体动物肌肉中特异性Ca2+结合所必需的。