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髓鞘蛋白脂蛋白的体外酰化作用及与体内酰化作用的比较:半胱氨酸的酰化作用是非酶促发生的。

Acylation in vitro of the myelin proteolipid protein and comparison with acylation in vivo: acylation of a cysteine occurs nonenzymatically.

作者信息

Ross N W, Braun P E

机构信息

Department of Biochemistry, McGill University, Montreal, Quebec, Canada.

出版信息

J Neurosci Res. 1988 Sep;21(1):35-44. doi: 10.1002/jnr.490210106.

DOI:10.1002/jnr.490210106
PMID:2464071
Abstract

Characteristics of fatty acylation of myelin proteolipid protein (PLP) in vitro were compared with the corresponding process in vivo. Rapid and efficient separation of labelled PLP from other proteins and lipids was effected by extraction into chloroform/methanol/0.1 N HCl (10/10/1) and chromatography on Sephadex LH-60 in the same solvent. Covalent linkage of [3H]-palmitate to PLP was demonstrated by repetitive chromatography on LH-60, thin layer chromatography, and polyacrylamide gel electrophoresis. Reductive cleavage with sodium borohydride of PLP acylated in vitro or in vivo yielded [3H]-hexadecanol, identifying at least one of the acyl linkages as a thiolester bond. When PLP was acylated with acyl-CoA as the fatty acid donor, the reaction occurred non-enzymatically as supported by the following observations: 1) acylation activity increased with increasing pH above pH 7.5, 2) acylation activity was heat stable, 3) acylation activity was not removed from PLP during purification in organic solvents or in Triton X-100-containing buffers, and 4) acylation of tryptic fragments occurred in the absence of an exogenously added enzyme source. The relevance of in vitro fatty acylation of PLP to that in vivo was confirmed by comparison of proteolytically derived peptide maps that showed that likely the same domain of PLP was acylated in vitro and in vivo.

摘要

将髓鞘蛋白脂蛋白(PLP)体外脂肪酰化的特性与体内相应过程进行了比较。通过用氯仿/甲醇/0.1N盐酸(10/10/1)萃取以及在相同溶剂中于Sephadex LH - 60上进行色谱分离,可快速有效地从其他蛋白质和脂质中分离出标记的PLP。通过在LH - 60上重复色谱、薄层色谱和聚丙烯酰胺凝胶电泳证明了[3H] - 棕榈酸与PLP的共价连接。用硼氢化钠对体外或体内酰化的PLP进行还原裂解产生了[3H] - 十六醇,确定至少一种酰基连接为硫酯键。当以酰基辅酶A作为脂肪酸供体对PLP进行酰化时,该反应是非酶促的,以下观察结果支持这一点:1)酰化活性在pH 7.5以上随pH升高而增加,2)酰化活性对热稳定,3)在有机溶剂或含Triton X -

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