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钙和镁与去表皮肌纤维中细肌丝和粗肌丝的结合:电子探针分析

Calcium and magnesium binding to thin and thick filaments in skinned muscle fibres: electron probe analysis.

作者信息

Kitazawa T, Shuman H, Somlyo A P

出版信息

J Muscle Res Cell Motil. 1982 Dec;3(4):437-54. doi: 10.1007/BF00712093.

Abstract

Electron probe analysis of ultrathin cryosections with high spatial resolution was used to determine in situ the concentrations of Ca2+ and Mg2+ bound in the absence of ATP to myofilaments in the I and A-bands of skinned frog skeletal muscle. At 2.2 x 10(-11) M Ca2+ and 2.7 x 10(-9) M Mg2+, the inexchangeably bound Mg2+ in the I-band was equivalent to the amount of divalent cations known to be inexchangeably bound to F-actin, while the Ca2+ bound to the I-band was not significantly above zero. The bound Mg2+ in the I-band was not exchangeable with Ca2+ even when the skinned fibres were exposed to 10 mM Ca2+ solution. These results clearly indicate that Mg2+, rather than Ca2+, is the divalent cation bound to F-actin in the thin filaments in situ. In the presence of 1 mM Mg2+, the exchangeable Ca2+ bound to the I-band was increased as a function of the free Ca2+, while that in the A-band was not significantly changed with [Ca2+] up to 2 x 10(-5) M, and increased to approximately 0.8 mol Ca2+ per mol myosin at 10(-4) M Ca2+. At a saturating free Ca2+ in Tris-Cl solution, the bound Ca2+ content (2-3 mol Ca2+ per mol troponin) of the nonoverlapping I-band was unexpectedly low; the replacement of Tris with Na+ enhanced Ca2+ binding to the level equivalent to 3-4 mol Ca2+ per mol troponin. The depressant effect of Tris on Ca2+ binding was greater in the absence of Mg2+. High concentrations of Tris also reduced the maximum tension induced by 10(-4) M Ca2+ buffered with 10 mM EGTA. At 1.3 x 10(-7) M Ca2+, thought to be close to the cytoplasmic free Ca2+ in resting muscle, the I-band bound a significant amount of Ca2+: equivalent to about 1 mol Ca2+ per mol troponin. In rabbit myofibrils there was a significant amount (approximately 1.5 mol/mol myosin) of Ca2+ bound by the A-band at a free Ca2+ of 10(-4) M.

摘要

利用具有高空间分辨率的超薄冷冻切片的电子探针分析,原位测定了在无ATP情况下,去皮肤青蛙骨骼肌I带和A带中肌丝结合的Ca2+和Mg2+浓度。在2.2×10(-11)M Ca2+和2.7×10(-9)M Mg2+时,I带中不可交换结合的Mg2+相当于已知与F-肌动蛋白不可交换结合的二价阳离子量,而与I带结合的Ca2+并不显著高于零。即使将去皮肤纤维暴露于10 mM Ca2+溶液中,I带中结合的Mg2+也不能与Ca2+交换。这些结果清楚地表明,原位细肌丝中与F-肌动蛋白结合的二价阳离子是Mg2+而非Ca2+。在存在1 mM Mg2+时,与I带结合的可交换Ca2+随游离Ca2+的增加而增加,而在A带中,在[Ca2+]高达2×10(-5)M时,Ca2+结合量无显著变化,在10(-4)M Ca2+时,每摩尔肌球蛋白的Ca2+结合量增加到约0.8摩尔。在Tris-Cl溶液中游离Ca2+达到饱和时,不重叠I带的结合Ca2+含量(每摩尔肌钙蛋白2 - 3摩尔Ca2+)出人意料地低;用Na+替代Tris可使Ca2+结合量增加到相当于每摩尔肌钙蛋白3 - 4摩尔Ca2+的水平。在无Mg2+时,Tris对Ca2+结合的抑制作用更大。高浓度的Tris也降低了由10 mM EGTA缓冲的10(-4)M Ca2+诱导的最大张力。在1.3×10(-7)M Ca2+时,被认为接近静息肌肉中的细胞质游离Ca2+,I带结合了大量Ca2+:相当于每摩尔肌钙蛋白约1摩尔Ca2+。在兔肌原纤维中,在10(-4)M的游离Ca2+下,A带结合了大量(约1.5摩尔/摩尔肌球蛋白)的Ca2+。

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