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首页> 外文期刊>Journal of Muscle Research and Cell Motility >The effects of inorganic phosphate and arsenate on both passive muscle visco-elasticity and maximum Ca2+ activated tension in chemically skinned rat fast and slow twitch muscle fibres
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The effects of inorganic phosphate and arsenate on both passive muscle visco-elasticity and maximum Ca2+ activated tension in chemically skinned rat fast and slow twitch muscle fibres

机译:无机磷酸盐和砷酸盐对化学皮肤大鼠快慢肌纤维中被动肌黏弹性和最大Ca2 + 活化张力的影响

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摘要

The effects of adding either 25 mM inorganic phosphate (Pi) or its structural analogue arsenate (ASi) on both the maximum Ca2+ activated tension (Po) and passive muscle visco-elasticity (P2 tension) were investigated at 10°C, using segments of single, chemically skinned rat muscle fibres. Whilst the results confirmed some previous findings on the effects of Pi on Po, they also showed that the addition of 25 mM ASi led to a large (∼50%) but completely reversible depression of Po in both the fast and slow twitch rat muscle fibres. Moreover, the depression of Po by ASi was greater at low than at high pH values. Examined in the presence of Dextran T-500, the passive tension and sarcomere length responses to a ramp stretch were found to be qualitatively and quantitatively similar to those previously reported in intact rat muscle fibres. Thus, the tension response to a ramp stretch, in the presence and absence of either 25 mM Pi or ASi, consisted of a viscous (P1), a visco-elastic (P2) and an elastic (P3) tension. However, the addition of either 25 mM Pi or ASi led to ∼15–18% increase in the amplitude of the visco-elastic (P2) tension but had little or no effect on the amplitudes of the other two tension components (viscous, P1 and elastic, P3 tensions). Furthermore, neither compound significantly altered the relaxation rate of the passive muscle visco-elasticity (P2 tension). These results show that Po (arising from cycling cross-bridges) and passive muscle visco-elasticity (P2 tension) are affected differently by both Pi and ASi and suggest that they may not share a common structural basis. The possibility that passive muscle visco-elasticity (P2 tension) arises from the gap-(titin) filament (as suggested previously by Mutungi and Ranatunga, 1996b J Physiol 496: 827–837) and that Pi and ASi increase its amplitude by interacting with the PEVK region of the filament are discussed.
机译:研究了添加25 mM无机磷酸盐(Pi)或其结构类似物砷酸盐(ASi)对最大Ca2 +激活张力(Po)和被动肌肉粘弹性(P2 张力)的影响在10°C下,使用单层化学剥皮的大鼠肌肉纤维段。虽然结果证实了先前关于Pi对Po的影响的一些发现,但他们还表明,添加25 mM ASi会导致快和慢抽搐大鼠肌肉纤维中的Po大(〜50%)但完全可逆地降低。 。此外,在低pH值下,ASi对Po的抑制作用大于在高pH值下。在右旋糖酐T-500存在下进行检查,发现对斜向伸展的被动张力和肌节长度响应在质量和数量上均与先前在完整大鼠肌肉纤维中报道的相似。因此,在存在和不存在25 mM Pi或ASi的情况下,斜面拉伸的张力响应由粘性(P1 ),粘弹性(P2 )和弹性(P P3 )张力。但是,添加25 mM Pi或ASi会使粘弹性(P2 )张力的幅度增加约15-18%,但对其他两个张力分量的幅度几乎没有影响(粘性,P1 和弹性,P3 张力)。此外,这两种化合物均未显着改变被动肌肉粘弹性的松弛率(P2 张力)。这些结果表明,Pi和ASi对Po(由骑行跨桥产生)和被动肌肉粘弹性(P2 张力)的影响不同,表明它们可能没有共同的结构基础。被动肌肉的粘弹性(P2 张力)可能是由缝隙(titin)丝引起的(如Mutungi和Ranatunga,1996b J Physiol 496:827-837先前所建议),而Pi和ASi会增加其讨论了通过与灯丝的PEVK区域相互作用而产生的振幅。

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