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人体中的三磷酸腺苷周转。相对高磷血症期间降解减少。

Adenosine triphosphate turnover in humans. Decreased degradation during relative hyperphosphatemia.

作者信息

Johnson M A, Tekkanat K, Schmaltz S P, Fox I H

机构信息

Department of Internal Medicine, University Hospital, Ann Arbor, Michigan 48109-0108.

出版信息

J Clin Invest. 1989 Sep;84(3):990-5. doi: 10.1172/JCI114263.

Abstract

The regulation of ATP metabolism by inorganic phosphate (Pi) was examined in five normal volunteers through measurements of ATP degradation during relative Pi depletion and repletion states. Relative Pi depletion was achieved through dietary restriction and phosphate binders, whereas a Pi-repleted state was produced by oral Pi supplementation. ATP was radioactively labeled by the infusion of [8(14)C]adenine. Fructose infusion was used to produce rapid ATP degradation during Pi depletion and repletion states. Baseline measurements indicated a significant decrease of Pi levels during phosphate depletion and no change in serum or urinary purines. Serum values of Pi declined 20 to 26% within 15 min after fructose infusion in all states. Urine measurements of ATP degradation products showed an eightfold increase within 15 min after fructose infusion in both Pi-depleted and -supplemented states. Urinary radioactive ATP degradation products were fourfold higher and urinary purine specific activity was more than threefold higher during Pi depletion as compared with Pi repletion. Our data indicate that there is decreased ATP degradation to purine end products during a relative phosphate repletion state as compared to a relative phosphate depletion state. These data show that ATP metabolism can be altered through manipulation of the relative Pi state in humans.

摘要

通过测量五名正常志愿者在相对无机磷酸盐(Pi)缺乏和补充状态下的ATP降解情况,研究了Pi对ATP代谢的调节作用。通过饮食限制和磷酸盐结合剂实现相对Pi缺乏,而口服补充Pi则产生Pi补充状态。通过输注[8(14)C]腺嘌呤对ATP进行放射性标记。在Pi缺乏和补充状态下,输注果糖以促使ATP快速降解。基线测量表明,磷酸盐缺乏期间Pi水平显著降低,血清或尿嘌呤无变化。在所有状态下,输注果糖后15分钟内,血清Pi值下降20%至26%。Pi缺乏和补充状态下,输注果糖后15分钟内,尿液中ATP降解产物的测量值增加了八倍。与Pi补充状态相比,Pi缺乏期间尿放射性ATP降解产物高四倍,尿嘌呤比活性高三倍多。我们的数据表明,与相对磷酸盐缺乏状态相比,相对磷酸盐补充状态下ATP降解为嘌呤终产物的过程减少。这些数据表明,通过控制人体相对Pi状态可以改变ATP代谢。

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