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Glycogen content and excitation-contraction coupling in mechanically skinned muscle fibres of the cane toad

机译:甘蔗蟾蜍机械表皮肌纤维中的糖原含量和激发-收缩偶联

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class="enumerated" style="list-style-type:decimal">Mechanically skinned skeletal muscle fibres from the twitch region of the iliofibularis muscle of cane toads were used to investigate the relationship between fibre glycogen content and fibre capacity to respond to transverse tubular (T-) system depolarization.A large proportion of total fibre glycogen remained in mechanically skinned muscle fibres exposed to aqueous solutions. This glycogen pool (about 80 % of total fibre glycogen) was very stable when the preparation was incubated in a rigor solution (pH 7.0) but decreased gradually at a rate of 0.59 ± 0.20 % min−1 in a relaxing solution (200 nm [Ca2+]). The rate was considerably higher (2.66 ± 0.38 % min−1) when the preparations were exposed to 30 μm [Ca2+]. An even greater rate of glycogen loss was found after T-system depolarization-induced contractions. The Ca2+-dependent loss of fibre glycogen was caused by endogenous glycogenolytic processes.Silver stained SDS gels of components eluted into relaxing solution from single skinned fibres revealed a rapid (2 min) loss of parvalbumin and at least 10 other proteins varying in molecular mass between 10 and 80 kDa but there was essentially no loss of myosin heavy and light chains and actin. Subsequent elution for a further 30 min in either relaxing or maximally Ca2+-activating solution did not result in additional, appreciable detectable loss of fibre protein.Depletion of fibre glycogen was associated with loss of fibre ability to respond to T-system depolarization even though the bathing solutions contained high levels of ATP (8 mm) and creatine phosphate (10 mm).The capacity of mechanically skinned fibres to respond to T-system depolarization was highly ositively correlated (P < 0.0001) with initial fibre glycogen concentration.In conclusion, the results show that (i) the capacity of skeletal muscle to respond to T-system depolarization is related directly or indirectly to the non-washable glycogen pool in fibres, (ii) this relationship holds for conditions where glycogen is not required as a source of energy and (iii) the mechanically skinned fibre preparation is well suited to study the regulation of endogenous glycogenolytic enzymes.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 用机械蟾蜍蟾蜍腓肠肌抽搐区的骨骼肌骨骼肌纤维研究纤维糖原含量与纤维对横管(T-)系统去极化反应能力之间的关系。 大暴露于水溶液中的机械剥皮的肌肉纤维中残留的总纤维糖原比例为50%。当在严格的溶液(pH 7.0)中温育制剂时,该糖原池(约占总纤维糖原的80%)非常稳定,但是在0.59±0.20%min -1 的速率下逐渐降低。松弛溶液(200 nm [Ca 2 + ])。当制剂暴露于30μm[Ca 2 + ]时,该比率显着更高(2.66±0.38%min -1 )。 T系统去极化诱导的收缩后发现糖原损失率更高。 Ca 2 + 依赖的纤维糖原的损失是由内源性糖原分解过程引起的。 银染色的SDS凝胶的成分从单皮纤维洗脱到松弛溶液中显示快速(2 min)小白蛋白和至少10种其他蛋白质的分子量在10至80 kDa之间变化,但基本上没有肌球蛋白重链,轻链和肌动蛋白的损失。随后在松弛或最大程度地激活Ca 2 + 的溶液中再洗脱30分钟,不会导致纤维蛋白另外的,可检测的损失。 纤维糖原的消耗是即使沐浴液中含有高水平的ATP(8毫米)和磷酸肌酸(10毫米),纤维也会失去对T系统去极化的响应能力。 机械表皮纤维的响应能力结论:结果表明:(i)骨骼肌对T系统去极化的反应能力是(P <0.0001)。与纤维中不可洗的糖原池直接或间接相关,(ii)这种关系适用于不需要糖原作为能量来源的条件,并且(iii)机械蒙皮的纤维制品非常适合研究内源性调节糖原分解酶没错。

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