Borejdo J, Oplatka A
Pflugers Arch. 1976 Nov 5;366(2-3):177-84. doi: 10.1007/BF00585875.
The ATPase activity of actomyosin prepared from taenia coli muscle of guinea pig was found to increase upon adding rabbit skeletal heavy meromyosin (HMM) in the absence of Ca2+. SDS-gel electrophoresis of muscle homogenates did not reveal the presence of troponin. Ca2+-regulation in taenia coli muscle thus appears to be myosin-linked. The glycerinated muscles which did not develop any tension in the presence of EGTA contracted after irrigation with rabbit skeletal myosin. Skeletal HMM could also cause tension generation in strips of glycerinated taenia coli in the presence of EGTA. The tension developed by the muscles in the presence of Ca2+ was increased if HMM was added. The HMM-induced tension was associated with a marked increase in ATPase activity both in the presence and in the absence of Ca2+. No HMM-associated tension could be detected when inactivated HMM was employed or when MgATP was substituted with Mg-pyrophosphate or Mg-AMP-PNP. The mechanical effect of HMM probably results from a mechanochemical interaction between the added HMM and muscle actin.
发现在没有Ca2+的情况下,添加兔骨骼肌重酶解肌球蛋白(HMM)后,豚鼠结肠带肌制备的肌动球蛋白的ATP酶活性增加。肌肉匀浆的SDS凝胶电泳未显示肌钙蛋白的存在。因此,结肠带肌中的Ca2+调节似乎与肌球蛋白有关。在用EGTA处理时不产生任何张力的甘油化肌肉在用兔骨骼肌肌球蛋白冲洗后收缩。在EGTA存在的情况下,骨骼肌HMM也可使甘油化结肠带肌条产生张力。如果添加HMM,则肌肉在Ca2+存在时产生的张力会增加。HMM诱导的张力在有和没有Ca2+的情况下均与ATP酶活性的显著增加有关。当使用失活的HMM或用焦磷酸镁或Mg-AMP-PNP替代MgATP时,未检测到与HMM相关的张力。HMM的机械作用可能源于添加的HMM与肌肉肌动蛋白之间的机械化学相互作用。