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肌原纤维钙敏感性调节:轻链磷酸化和正性肌力药物对去表皮青蛙骨骼肌的影响

Myofibrillar calcium sensitivity modulation: influence of light chain phosphorylation and positive inotropic drugs on skinned frog skeletal muscle.

作者信息

Morano I, Piazzesi G, Rüegg J C

机构信息

II. Physiologisches Institut, Universität Heidelberg, Federal Republic of Germany.

出版信息

Adv Exp Med Biol. 1988;226:129-37.

PMID:3261485
Abstract

The myofibrillar calcium sensitivity of mammalian skeletal muscle and cardiac muscle may be increased by myosin light chain kinase (MLCK)-induced myosin phosphorylation5) 13). Here we report increasing calcium responsiveness of frog skeletal muscle fibres (Tibialis anterior, skinned by freeze drying) by MLCK-induced myosin P-light chain phosphorylation and by the non-glycoside, non-sympathomimetic positive inotropic drug pimobendan. Investigation of myosin light chains by two dimensional gel electrophoresis revealed two phosphorylatable P-light chains (LC-2) having the same isoelectric point (5.3 for the unphosphorylated, 5.1 for the phosphorylated form) but different molecular weights (19 and 18 kD, respectively). This pattern of LC-2 is distinct from mammalian skeletal and cardiac muscle (only one phosphorylatable P-light chain in skeletal, two phosphorylatable P-light chains in cardiac muscle with different isoelectric points, but identical molecular weight). The phosphorylation level was about 0.45 mole phosphate/mole P-light chains and could be increased by 16 +/- 3% by the addition of myosin light chain kinase. This procedure increased the isometric tension at pCa 5.5 by 21 +/- 5% while maximum tension (at pCa 4.3) was not affected by MLCK. The new inotropic drug pimobendan (10(-4) M) increased isometric tension at pCa 6 by 48 +/- 4.5%, but maximal tension was not affected. Another positive inotropic drug, sulmazole, has been shown to potentiate the twitch of intact frog Tibialis anterior muscle23) and to increase force of skinned fibres by 21.7 +/- 3.3% at submaximal activation (pCa 6).

摘要

肌球蛋白轻链激酶(MLCK)诱导的肌球蛋白磷酸化可增加哺乳动物骨骼肌和心肌的肌原纤维钙敏感性5)13)。在此,我们报告了通过MLCK诱导的肌球蛋白P轻链磷酸化以及非糖苷、非拟交感神经正性肌力药物匹莫苯丹,可增加青蛙骨骼肌纤维(冻干去皮的胫前肌)的钙反应性。通过二维凝胶电泳对肌球蛋白轻链进行研究,发现有两条可磷酸化的P轻链(LC-2),其等电点相同(未磷酸化形式为5.3,磷酸化形式为5.1),但分子量不同(分别为19kD和18kD)。这种LC-2模式与哺乳动物骨骼肌和心肌不同(骨骼肌中只有一条可磷酸化的P轻链,心肌中有两条可磷酸化的P轻链,等电点不同,但分子量相同)。磷酸化水平约为0.45摩尔磷酸盐/摩尔P轻链,添加肌球蛋白轻链激酶可使其增加16±3%。该过程使pCa 5.5时的等长张力增加了21±5%,而最大张力(pCa 4.3时)不受MLCK影响。新型正性肌力药物匹莫苯丹(10-4 M)使pCa 6时的等长张力增加了48±4.5%,但最大张力未受影响。另一种正性肌力药物舒马唑已被证明可增强完整青蛙胫前肌的抽搐23),并在次最大激活(pCa 6)时使去皮纤维的力量增加21.7±3.3%。

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