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Distinct effects of subcellular glycogen localization on tetanic relaxation time and endurance in mechanically skinned rat skeletal muscle fibres

机译:亚细胞糖原定位对机械剥皮大鼠骨骼肌纤维中强直性舒张时间和耐力的明显影响

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摘要

In vitro experiments indicate a non-metabolic role of muscle glycogen in contracting skeletal muscles. Since the sequence of events in excitation–contraction (E–C) coupling is known to be located close to glycogen granules, at specific sites on the fibre, we hypothesized that the distinct compartments of glycogen have specific effects on muscle fibre contractility and fatigability. Single skeletal muscle fibres (n= 19) from fed and fasted rats were mechanically skinned and divided into two segments. In one segment glycogen localization and volume fraction were estimated by transmission electron microscopy. The other segment was mechanically skinned and, in the presence of high and constant myoplasmic ATP and PCr, electrically stimulated (10 Hz, 0.8 s every 3 s) eliciting repeated tetanic contractions until the force response was decreased by 50% (mean ±s.e.m., 81 ± 16, range 22–252 contractions). Initially the total myofibrillar glycogen volume percentage was 0.46 ± 0.07%, with 72 ± 3% in the intermyofibrillar space and 28 ± 3% in the intramyofibrillar space. The intramyofibrillar glycogen content was positively correlated with the fatigue resistance capacity (r2= 0.32, P= 0.02). Intermyofibrillar glycogen was inversely correlated with the half-relaxation time in the unfatigued tetanus (r2= 0.25, P= 0.03). These results demonstrate for the first time that two distinct subcellular populations of glycogen have different roles in contracting single muscle fibres under conditions of high myoplasmic ATP.
机译:体外实验表明,肌肉糖原在骨骼肌收缩中没有代谢作用。由于已知激发-收缩(EC)耦合中的事件序列位于糖原颗粒附近,在纤维上的特定位置,因此我们假设糖原的不同区室对肌肉纤维的收缩性和易疲劳性具有特定的影响。对进食和禁食大鼠的单条骨骼肌纤维(n = 19)进行机械剥皮,分为两段。在一个区段中,通过透射电子显微镜估计糖原定位和体积分数。另一部分进行了机械剥皮,并在存在高而恒定的肌浆ATP和PCr的情况下,电刺激(10 Hz,每3 s为0.8 s)引起反复的强直性收缩,直到力响应降低50%(平均值±标准误, 81±16,收缩范围22-252。最初,总的肌原纤维糖原体积百分比为0.46±0.07%,其中肌原纤维间间隙为72±3%,肌原纤维内间隙为28±3%。肌原纤维内糖原含量与抗疲劳能力呈正相关(r2 = 0.32,P = 0.02)。肌原纤维间糖原与未疲劳破伤风的半松弛时间呈负相关(r2 = 0.25,P = 0.03)。这些结果首次证明,在高肌质ATP的条件下,两个不同的糖原亚细胞群体在收缩单个肌肉纤维中具有不同的作用。

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