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棕榈酰肉碱及相关代谢产物对禽类Ca(2+)-ATP酶和Ca2+释放通道的影响。

Effects of palmitoyl carnitine and related metabolites on the avian Ca(2+)-ATPase and Ca2+ release channel.

作者信息

Dumonteil E, Barré H, Meissner G

机构信息

Department of Biochemistry and Biophysics, University of North Carolina, Chapel Hill 27599-7260.

出版信息

J Physiol. 1994 Aug 15;479 ( Pt 1)(Pt 1):29-39. doi: 10.1113/jphysiol.1994.sp020275.

Abstract
  1. In birds, prolonged cold exposure induces the development of a non-shivering thermogenesis (NST) of muscular origin that may result from an increase in ATP-dependent cycling of Ca2+ between the sarcoplasmic reticulum (SR) and the cytosol. 2. Because fatty acids are thought to play a significant role in NST, we investigated the effects of palmitic acid and related metabolites on skeletal SR Ca2+ uptake and release in ducklings. 3. Ca(2+)-ATPase activity, 45Ca2+ release and [3H]ryanodine-binding measurements indicated that palmitic acid was without effect on the Ca(2+)-ATPase and Ca2+ release channel. Palmitoyl carnitine and palmitoyl coenzyme A inhibited the Ca(2+)-ATPase at concentrations > 20 microM whereas both activated the Ca2+ release channel at concentrations < or = 20 microM in a dose-dependent manner. 4. Palmitoyl carnitine stimulated [3H]ryanodine binding to skeletal but not cardiac SR vesicles. Induction of 45Ca2+ release was observed with long-chain (C > or = 14) but not with short-chain acyl carnitines (C < or = 12). 5. Long-chain acyl carnitines accumulated significantly in duckling skeletal muscle during cold acclimation. Accordingly, these results suggest that long-chain acyl metabolites may modulate SR Ca2+ cycling and its associated thermogenesis in vivo.
摘要
  1. 在鸟类中,长时间暴露于寒冷环境会诱导肌肉来源的非颤抖性产热(NST)的发展,这可能是由于肌浆网(SR)和细胞质之间依赖ATP的Ca2+循环增加所致。2. 由于脂肪酸被认为在NST中起重要作用,我们研究了棕榈酸及相关代谢产物对雏鸭骨骼肌SR Ca2+摄取和释放的影响。3. Ca(2+)-ATP酶活性、45Ca2+释放和[3H]ryanodine结合测量表明,棕榈酸对Ca(2+)-ATP酶和Ca2+释放通道没有影响。棕榈酰肉碱和棕榈酰辅酶A在浓度>20 microM时抑制Ca(2+)-ATP酶,而两者在浓度≤20 microM时以剂量依赖方式激活Ca2+释放通道。4. 棕榈酰肉碱刺激[3H]ryanodine与骨骼肌而非心肌SR囊泡结合。观察到长链(C≥14)而非短链酰基肉碱(C≤12)诱导45Ca2+释放。5. 在冷适应过程中,长链酰基肉碱在雏鸭骨骼肌中显著积累。因此,这些结果表明长链酰基代谢产物可能在体内调节SR Ca2+循环及其相关的产热。

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