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耐缺氧龟种红耳龟(滑龟)白色肌肉乳酸脱氢酶的纯化及性质

Purification and Properties of White Muscle Lactate Dehydrogenase from the Anoxia-Tolerant Turtle, the Red-Eared Slider, Trachemys scripta elegans.

作者信息

Dawson Neal J, Bell Ryan A V, Storey Kenneth B

机构信息

Institute of Biochemistry and Department of Biology, Carleton University, 1125 Colonel By Drive, Ottawa, ON, Canada K1S 5B6.

出版信息

Enzyme Res. 2013;2013:784973. doi: 10.1155/2013/784973. Epub 2013 Feb 21.

Abstract

Lactate dehydrogenase (LDH; E.C. 1.1.1.27) is a crucial enzyme involved in energy metabolism in muscle, facilitating the production of ATP via glycolysis during oxygen deprivation by recycling NAD(+). The present study investigated purified LDH from the muscle of 20 h anoxic and normoxic T. s. elegans, and LDH from anoxic muscle showed a significantly lower (47%) K m for L-lactate and a higher V max value than the normoxic form. Several lines of evidence indicated that LDH was converted to a low phosphate form under anoxia: (a) stimulation of endogenously present protein phosphatases decreased the K m of L-lactate of control LDH to anoxic levels, whereas (b) stimulation of kinases increased the K m of L-lactate of anoxic LDH to normoxic levels, and (c) dot blot analysis shows significantly less serine (78%) and threonine (58%) phosphorylation in anoxic muscle LDH as compared to normoxic LDH. The physiological consequence of anoxia-induced LDH dephosphorylation appears to be an increase in LDH activity to promote the reduction of pyruvate in muscle tissue, converting the glycolytic end product to lactate to maintain a prolonged glycolytic flux under energy-stressed anoxic conditions.

摘要

乳酸脱氢酶(LDH;E.C. 1.1.1.27)是一种参与肌肉能量代谢的关键酶,在缺氧时通过循环利用NAD(+),促进糖酵解产生ATP。本研究调查了来自20小时缺氧和常氧状态的秀丽隐杆线虫肌肉中的纯化LDH,缺氧肌肉中的LDH对L-乳酸的K m值显著降低(47%),且V max值高于常氧状态下的LDH。多项证据表明,LDH在缺氧状态下转变为低磷酸化形式:(a)刺激内源性蛋白磷酸酶可使对照LDH的L-乳酸K m值降至缺氧水平,而(b)刺激激酶可使缺氧LDH的L-乳酸K m值升至常氧水平,并且(c)斑点印迹分析显示,与常氧LDH相比,缺氧肌肉LDH中的丝氨酸(78%)和苏氨酸(58%)磷酸化显著减少。缺氧诱导的LDH去磷酸化的生理后果似乎是LDH活性增加,以促进肌肉组织中丙酮酸的还原,将糖酵解终产物转化为乳酸,从而在能量紧张的缺氧条件下维持延长的糖酵解通量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f64/3594981/c17371c58da3/ER2013-784973.001.jpg

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