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本文引用的文献

1
Muscle structure and theories of contraction.肌肉结构与收缩理论。
Prog Biophys Biophys Chem. 1957;7:255-318.
2
Electrical activity and intracellular sodium concentration in frog muscle.青蛙肌肉中的电活动和细胞内钠浓度。
J Physiol. 1953 Jul;121(1):191-205. doi: 10.1113/jphysiol.1953.sp004940.
3
Mechanical and electrical correlates of isometric muscle fatigue in skeletal muscle in the cat.猫骨骼肌等长收缩肌肉疲劳的机械和电相关因素
Pflugers Arch. 1980 Aug;387(1):33-8. doi: 10.1007/BF00580841.
4
The contents of high-energy phosphates in different fibre types in skeletal muscles from rat, guinea-pig and man.大鼠、豚鼠和人体骨骼肌中不同纤维类型的高能磷酸盐含量。
J Physiol. 1982 Nov;332:47-58. doi: 10.1113/jphysiol.1982.sp014399.
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Application of 31P-NMR spectroscopy to the study of striated muscle metabolism.31P-核磁共振波谱在横纹肌代谢研究中的应用。
Am J Physiol. 1982 Jan;242(1):C1-11. doi: 10.1152/ajpcell.1982.242.1.C1.
6
Effects of fatigue and altered pH on isometric force and velocity of shortening at zero load in frog muscle fibres.疲劳和pH值改变对蛙肌纤维零负荷下等长力和缩短速度的影响。
J Muscle Res Cell Motil. 1981 Sep;2(3):321-34. doi: 10.1007/BF00713270.
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Effects of calcium and ionic strength on shortening velocity and tension development in frog skinned muscle fibres.钙和离子强度对青蛙去皮肌纤维缩短速度和张力发展的影响。
J Physiol. 1981 Feb;311:179-99. doi: 10.1113/jphysiol.1981.sp013580.
8
Mechanical relaxation rate and metabolism studied in fatiguing muscle by phosphorus nuclear magnetic resonance.通过磷核磁共振研究疲劳肌肉中的机械松弛率和代谢。
J Physiol. 1980 Feb;299:465-84. doi: 10.1113/jphysiol.1980.sp013137.
9
Vanadate and phosphate ions reduce tension and increase cross-bridge kinetics in chemically skinned heart muscle.钒酸盐和磷酸根离子可降低化学去膜心肌的张力并加快横桥动力学。
Biochim Biophys Acta. 1981 Jan 21;672(2):191-6. doi: 10.1016/0304-4165(81)90392-5.
10
31P NMR studies of resting muscle in normal human subjects.正常人类受试者静息肌肉的31P核磁共振研究。
Adv Exp Med Biol. 1984;170:333-47. doi: 10.1007/978-1-4684-4703-3_28.

氢离子和磷酸盐对兔骨骼肌收缩的抑制作用。

The inhibition of rabbit skeletal muscle contraction by hydrogen ions and phosphate.

作者信息

Cooke R, Franks K, Luciani G B, Pate E

机构信息

Department of Biochemistry and Biophysics, University of California, San Francisco.

出版信息

J Physiol. 1988 Jan;395:77-97. doi: 10.1113/jphysiol.1988.sp016909.

DOI:10.1113/jphysiol.1988.sp016909
PMID:2842489
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1191984/
Abstract
  1. The effects of phosphate and protons on the mechanics and energetics of muscle contraction have been investigated using glycerinated rabbit psoas muscle. 2. Fibres were fully activated by addition of Ca2+ (pCa 4-5) at 10 degrees C. The velocities of contraction were measured in isotonic load clamps, and the velocities of unloaded fibres were measured by applying a series of step changes in fibre length. Fibre ATPase activity was monitored using an enzyme system to couple ADP production to reduced nicotinamide-adenine dinucleotide (NADH) and measuring the depletion of NADH by optical density. 3. At pH 7.0 and 3 mM-phosphate, isometric tension (P0) was 13.2 +/- 0.9 N/cm (mean +/- S.E.M., n = 10 observations), the maximum contraction velocity (Vmax) was 1.63 +/- 0.05 lengths/s (n = 5) and the ATPase activity was 1.27 +/- 0.12 s-1 myosin head-1 (n = 35). Increasing phosphate from 3 to 20 mM at pH 7.0 does not affect Vmax, causes a small decrease in the ATPase activity (15-20%) and decreases P0 by approximately 20%. Changing pH from 7 to 6 at 3 mM-phosphate decreases P0 by 45% and both Vmax and ATPase activity by 25-30%. The effects of changing both pH and phosphate were approximately additive for all parameters measured. The inhibition of these parameters by low pH and high concentration of phosphate was reversible. 4. The force-velocity relation was fitted by the Hill equation using a non-linear least-squares method. The value of the parameter which describes the curvature, a/P0, was 0.20. The curvature of the force-velocity relation was not changed by addition of phosphate or by changes in pH. 5. These data provide information on both the kinetics of the actomyosin interaction and on the process of muscle fatigue. The data are consistent with models of cross-bridge kinetics in which phosphate is released within the powerstroke in a step involving a rapid equilibrium between states. The inhibition by protons is more complex, and may involve less specific effects on protein structure. 6. During moderate fatigue of living skeletal muscle, MgATP concentration is known to remain approximately constant at 4 mM, phosphate to increase from 3 to 20 mM, and protons from 0.1 to 1 microM. The data suggest that much of the inhibition of P0 observed during moderate fatigue can be explained by the increased levels of phosphate and protons, and that much of the inhibition of fibre Vmax and ATPase activity can be explained by the increase in protons.
摘要
  1. 利用甘油处理的兔腰大肌研究了磷酸盐和质子对肌肉收缩力学和能量学的影响。2. 在10℃下,通过添加Ca2+(pCa 4 - 5)使纤维完全激活。在等张负荷钳中测量收缩速度,通过对纤维长度施加一系列阶跃变化来测量无负荷纤维的速度。使用酶系统监测纤维ATP酶活性,该系统将ADP的产生与还原型烟酰胺腺嘌呤二核苷酸(NADH)偶联,并通过光密度测量NADH的消耗。3. 在pH 7.0和3 mM磷酸盐条件下,等长张力(P0)为13.2±0.9 N/cm(平均值±标准误,n = 10次观察),最大收缩速度(Vmax)为1.63±0.05长度/秒(n = 5),ATP酶活性为1.27±0.12 s-1肌球蛋白头部-1(n = 35)。在pH 7.0时将磷酸盐从3 mM增加到20 mM不影响Vmax,使ATP酶活性略有降低(15 - 20%),并使P0降低约20%。在3 mM磷酸盐条件下将pH从7变为6使P0降低45%,Vmax和ATP酶活性均降低25 - 30%。对于所有测量参数,改变pH和磷酸盐的影响大致是相加的。低pH和高浓度磷酸盐对这些参数的抑制是可逆的。4. 用力 - 速度关系通过希尔方程使用非线性最小二乘法拟合。描述曲率的参数值a/P0为0.20。添加磷酸盐或改变pH不会改变力 - 速度关系的曲率。5. 这些数据提供了关于肌动球蛋白相互作用动力学以及肌肉疲劳过程的信息。这些数据与横桥动力学模型一致,在该模型中磷酸盐在动力冲程内以涉及状态之间快速平衡的步骤释放。质子的抑制作用更复杂,可能涉及对蛋白质结构的非特异性影响。6. 在活体骨骼肌中度疲劳期间,已知MgATP浓度在4 mM左右保持大致恒定,磷酸盐从3 mM增加到20 mM,质子从0.1 microM增加到1 microM。数据表明,在中度疲劳期间观察到的对P0的大部分抑制可以由磷酸盐和质子水平的增加来解释,并且对纤维Vmax和ATP酶活性的大部分抑制可以由质子的增加来解释。