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通过31P磁共振波谱研究缺血运动的人前臂肌肉中ATP合成与质子处理的相互关系。

Interrelations of ATP synthesis and proton handling in ischaemically exercising human forearm muscle studied by 31P magnetic resonance spectroscopy.

作者信息

Kemp G J, Roussel M, Bendahan D, Le Fur Y, Cozzone P J

机构信息

Department of Musculoskeletal Science, University of Liverpool, Liverpool L69 3GA, UK.

出版信息

J Physiol. 2001 Sep 15;535(Pt 3):901-28. doi: 10.1111/j.1469-7793.2001.00901.x.

Abstract
  1. In ischaemic exercise ATP is supplied only by glycogenolysis and net splitting of phosphocreatine (PCr). Furthermore, 'proton balance' involves only glycolytic lactate/H+ generation and net H+ 'consumption' by PCr splitting. This work examines the interplay between these, metabolic regulation and the creatine kinase equilibrium. 2. Nine male subjects (age 25-45 years) performed finger flexion (7 % maximal voluntary contraction at 0.67 Hz) under cuff ischaemia. 31P magnetic resonance spectra were acquired from finger flexor muscle in a 4.7 T magnet using a 5 cm surface coil. 3. Initial PCr depletion rate estimates total ATP turnover rate; glycolytic ATP synthesis was obtained from this and changes in [PCr], and then used to obtain flux through 'distal' glycolysis (phosphofructokinase and beyond) to lactate; 'proximal' flux (through phosphorylase) was obtained from this and changes in [phosphomonoester]. Total H+ load (lactate load less H+ consumption) was used to estimate cytosolic buffer capacity (beta). 4. Glycolytic ATP synthesis increased from near zero while PCr splitting declined. Net H+ load was approximately linear with pH, suggesting beta = 20 mmol x l(-1) (pH unit)(-1) at rest, increasing as pH falls. 5. Relationships between glycolytic rate and changes in [PCr] (i.e. the time-integrated mismatch between ATP use and production), and thus also [P(i)] (substrate for phosphorylase), suggest that increase in glycolysis is due partly to 'open-loop' Ca2+-dependent conversion of phosphorylase b to a, and partly to the 'closed loop' increase in P(i) consequent on net PCr splitting. 6. The 'settings' of these mechanisms have a strong influence on changes in pH and metabolite concentrations.
摘要
  1. 在缺血性运动中,ATP仅由糖原分解和磷酸肌酸(PCr)的净分解提供。此外,“质子平衡”仅涉及糖酵解产生乳酸/氢离子以及PCr分解产生的净氢离子“消耗”。本研究探讨了这些过程、代谢调节与肌酸激酶平衡之间的相互作用。2. 9名男性受试者(年龄25 - 45岁)在袖带缺血状态下进行手指屈曲(以0.67 Hz频率进行7%最大自主收缩)。使用5 cm表面线圈在4.7 T磁体中采集手指屈肌的31P磁共振波谱。3. 初始PCr消耗率估算总ATP周转率;糖酵解ATP合成量由此以及[PCr]的变化得出,然后用于计算通过“远端”糖酵解(磷酸果糖激酶及之后的过程)生成乳酸的通量;“近端”通量(通过磷酸化酶)由此以及[磷酸单酯]的变化得出。总氢离子负荷(乳酸负荷减去氢离子消耗)用于估算胞质缓冲能力(β)。4. 糖酵解ATP合成从接近零开始增加,而PCr分解减少。净氢离子负荷与pH大致呈线性关系,表明静息时β = 20 mmol·L⁻¹(pH单位)⁻¹,随pH下降而增加。5. 糖酵解速率与[PCr]的变化(即ATP使用与产生之间的时间积分不匹配)之间的关系,以及因此与[P(i)](磷酸化酶的底物)之间的关系表明,糖酵解增加部分是由于磷酸化酶b向a的“开环”钙依赖性转化,部分是由于净PCr分解导致的P(i)“闭环”增加。6. 这些机制的“设置”对pH和代谢物浓度的变化有很大影响。

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