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首页> 外文期刊>American Journal of Physiology >Molecular and kinetic alterations of muscle AMP deaminase during chronic creatine depletion.
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Molecular and kinetic alterations of muscle AMP deaminase during chronic creatine depletion.

机译:慢性肌酸耗竭期间肌肉AMP脱氨酶的分子和动力学变化。

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We examined a possible mechanism to account for the maintenance of peak AMP deamination rate in fast-twitch muscle of rats fed the creatine analog beta-guanidinopropionic acid (beta-GPA), in spite of reduced abundance of the enzyme AMP deaminase (AMPD). AMPD enzymatic capacity (determined at saturating AMP concentration) and AMPD protein abundance (Western blot) were coordinately reduced approximately 80% in fast-twitch white gastrocnemius muscle by beta-GPA feeding over 7 wk. Kinetic analysis of AMPD in the soluble cell fraction demonstrated a single Michaelis-Menten constant (Km; approximately 1.5 mM) in control muscle extracts. An additional high-affinity Km (approximately 0.03 mM) was revealed at low AMP concentrations in extracts of beta-GPA-treated muscle. The kinetic alteration in AMPD reflects increased molecular activity at low AMP concentrations; this could account for high rates of deamination in beta-GPA-treated muscle in situ, despite the loss of AMPD enzyme protein. The elimination of this kinetic effect by treatment of beta-GPA-treated muscle extracts with acid phosphatase in vitro suggests that phosphorylation is involved in the kinetic control of skeletal muscle AMPD in vivo.
机译:我们研究了一种可能的机制,尽管维持了AMP脱氨酶(AMPD)的丰度降低,但在维持肌酸类似物β-胍基丙酸(β-GPA)的大鼠的快肌中维持了AMP脱氨峰速率的维持。在超过7周的时间内,β-GPA可以使快速抽动的白色腓肠肌的AMPD酶容量(在饱和AMP浓度下确定)和AMPD蛋白丰度(Western blot)降低约80%。可溶性细胞部分中AMPD的动力学分析表明,对照肌肉提取物中单个Michaelis-Menten常数(Km;约1.5 mM)。在低AMP浓度下,在经β-GPA处理的肌肉提取物中发现了另一个高亲和力Km(约0.03 mM)。 AMPD的动力学变化反映了在低AMP浓度下分子活性的增加;尽管可能丢失了AMPD酶蛋白,但这可能解释了在用β-GPA处理过的原位肌肉中的高脱氨率。通过体外用酸性磷酸酶处理经β-GPA处理的肌肉提取物来消除这种动力学作用,表明磷酸化在体内参与了骨骼肌AMPD的动力学控制。

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