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小鼠肌肉营养不良中的磷脂组成与代谢

Phospholipid composition and metabolism in mouse muscular dystrophy.

作者信息

Kwok C T, Austin L

出版信息

Biochem J. 1978 Oct 15;176(1):15-22. doi: 10.1042/bj1760015.

Abstract
  1. The composition and metabolism of phospholipids were studied in various tissues from both normal and dystrophic mice of the 129 ReJ strain. Phospholipids extracted from forebrain, spinal cord, sciatic nerve and plasma were fractionated by t.l.c. and measured. 2. Very significant alterations were found in the choline phospholipids from these tissues, except forebrain. Plasma phosphatidylcholine in the dystrophic mouse was increased by 38%. There was a 2-fold increase in lysophosphatidylcholine in the spinal cord of dystrophic mice. The sciatic nerve showed a marked decrease in sphingomyelin content, which is approximately half of that in the controls. 3. Five enzymes involved in phosphatidylcholine metabolism [namely cholinephosphotransferase (EC 2.7.8.2); phospholipases A (EC 3.1.1.4, EC 3.1.1.32); lysophospholipase (EC 3.1.1.5); lysophosphatidylcholine acyltransferase (EC 2.3.1.23); phospholipase C (EC 3.1.4.3)] were studied in tissue preparations from forebrain, spinal cord, sciatic nerves, gastrocnemius muscles and liver. 4. Activities of phospholipases A and C were significantly increased, about 5-fold and 60% respectively, in gastrocnemius muscle of dystrophic mice compared with controls. Phospholipases A also showed 50% higher activity in the sciatic nerves of dystrophic than of normal mice. Lysophosphatidylcholine acyltransferase activities were significantly increased in the sciatic nerves and spinal cord, by 50-100% over that of the controls. The forebrain and spinal cord from dystrophic mice, however, had only 60% of lysophospholipase activities of that of the normal control. Cholinephosphotransferase activity was unchanged in these tissues from both normal and dystrophic mice. 5. It is suggested that are number of features of mouse muscular dystrophy related to altered membrane structure and function can be rationalized in terms of changes in lipid composition and metabolism.
摘要
  1. 对129 ReJ品系正常和营养不良小鼠的各种组织中的磷脂组成和代谢进行了研究。从前脑、脊髓、坐骨神经和血浆中提取的磷脂通过薄层层析进行分离并测定。2. 发现这些组织(前脑除外)中的胆碱磷脂有非常显著的变化。营养不良小鼠血浆中的磷脂酰胆碱增加了38%。营养不良小鼠脊髓中的溶血磷脂酰胆碱增加了两倍。坐骨神经中的鞘磷脂含量显著降低,约为对照组的一半。3. 研究了参与磷脂酰胆碱代谢的五种酶[即胆碱磷酸转移酶(EC 2.7.8.2);磷脂酶A(EC 3.1.1.4,EC 3.1.1.32);溶血磷脂酶(EC 3.1.1.5);溶血磷脂酰胆碱酰基转移酶(EC 2.3.1.23);磷脂酶C(EC 3.1.4.3)]在前脑、脊髓、坐骨神经、腓肠肌和肝脏的组织制剂中的情况。4. 与对照组相比,营养不良小鼠腓肠肌中磷脂酶A和C的活性显著增加,分别约为5倍和60%。磷脂酶A在营养不良小鼠坐骨神经中的活性也比正常小鼠高50%。溶血磷脂酰胆碱酰基转移酶活性在坐骨神经和脊髓中显著增加,比对照组高50 - 100%。然而,营养不良小鼠的前脑和脊髓的溶血磷脂酶活性仅为正常对照的60%。正常和营养不良小鼠的这些组织中胆碱磷酸转移酶活性均未改变。5. 有人提出,小鼠肌肉营养不良的许多与膜结构和功能改变相关的特征可以根据脂质组成和代谢的变化得到合理的解释。

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