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兔腰大肌去皮肤肌纤维的肌原纤维ATP酶活性和力学性能

Myofibrillar ATPase activity and mechanical performance of skinned fibres from rabbit psoas muscle.

作者信息

Potma E J, Stienen G J, Barends J P, Elzinga G

机构信息

Laboratory for Physiology, Free University, Amsterdam, The Netherlands.

出版信息

J Physiol. 1994 Jan 15;474(2):303-17. doi: 10.1113/jphysiol.1994.sp020023.

DOI:10.1113/jphysiol.1994.sp020023
PMID:8006817
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1160319/
Abstract
  1. The relationship between energy turnover and mechanical performance was investigated in chemically skinned single fibres from rabbit psoas muscle at 15 degrees C, pH = 7.1, with MgATP, 5 mM; free Mg2+, 1 mM; ionic strength, 200 mM and sarcomere length, 2.4 microns by measuring force production and myofibrillar ATP turnover during isometric contractions as well as during repetitive changes in length. ATP hydrolysis was stoichiometrically coupled to the breakdown of NADH, which was measured photometrically via the absorption of near UV light at 340 nm. 2. Force and ATPase activity were measured during square-wave length changes of different amplitudes (1-10% of the fibre length, Lo) and different frequencies (2.5-167 Hz). The average force during the length changes was less than the isometric value and decreased with increasing amplitude and frequency. At full activation (pCa 4.5), the isometric ATP turnover rate (+/- S.E.M.) was 2.30 +/- 0.05 s-1 per myosin head. ATP turnover increased monotonically with increasing amplitude as well as with increasing frequency until saturation was reached. The greatest increase observed was 2.4 times the isometric value. 3. Force and ATPase activity were also determined for ramp shortenings followed by fast restretches. The average force decreased with increasing shortening velocity in a hyperbolic fashion. The ATP turnover increased with ramp velocity up to 0.5 L0 s-1 and stayed almost constant (at 2.2 times the isometric value) for larger velocities. 4. Isometric force and ATPase activity both decreased as the calcium concentration was decreased. They did not vary in proportion at low Ca2+ concentrations, but this could largely be accounted for by the presence of a residual, Ca(2+)-dependent, membrane-bound ATPase. At high calcium concentrations ATPase activity during square-wave length changes was higher than the isometric value, but at low calcium concentrations (pCa > 6.1), the ATPase activity during the length changes decreased below the isometric value and reached a minimum of 40% of the isometric level. 5. ATPase activity and average force obtained during changes in length show a high, movement protocol-independent correlation. During the length changes the rate of ATP turnover divided by the average force level (tension cost) was larger than the isometric tension cost. The largest value found, for 10% length changes at 23 Hz, was 17 times the tension cost under isometric conditions.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在15摄氏度、pH = 7.1、含有5 mM MgATP、1 mM游离Mg2+、离子强度为200 mM且肌节长度为2.4微米的条件下,对兔腰大肌化学去膜单纤维进行研究,通过测量等长收缩以及长度反复变化过程中的力产生和肌原纤维ATP周转,来探究能量周转与机械性能之间的关系。ATP水解与NADH的分解化学计量偶联,通过在340 nm处近紫外光的吸收光度法测量NADH。2. 在不同幅度(纤维长度Lo的1 - 10%)和不同频率(2.5 - 167 Hz)的方波长度变化过程中测量力和ATP酶活性。长度变化期间的平均力小于等长力值,并随幅度和频率增加而降低。在完全激活(pCa 4.5)时,每个肌球蛋白头部的等长ATP周转速率(±标准误)为2.30 ± 0.05 s-1。ATP周转随幅度增加以及频率增加单调增加,直至达到饱和。观察到的最大增加是等长值的2.4倍。3. 对于先进行斜坡缩短然后快速再拉伸的情况,也测定了力和ATP酶活性。平均力以双曲线方式随缩短速度增加而降低。ATP周转随斜坡速度增加直至0.5 L0 s-1,对于更大速度则几乎保持恒定(为等长值的2.2倍)。4. 随着钙浓度降低,等长力和ATP酶活性均降低。在低Ca2+浓度下它们不成比例变化,但这在很大程度上可归因于存在残余的、Ca(2+)依赖性的膜结合ATP酶。在高钙浓度下,方波长度变化期间的ATP酶活性高于等长值,但在低钙浓度(pCa > 6.1)下,长度变化期间的ATP酶活性降低至等长值以下,最低达到等长水平的40%。5. 长度变化期间获得的ATP酶活性和平均力显示出高度的、与运动方案无关的相关性。在长度变化期间,ATP周转速率除以平均力水平(张力成本)大于等长张力成本。在23 Hz下10%长度变化时发现的最大值是等长条件下张力成本的17倍。(摘要截断于400字)

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