Benjamins J A, Studzinski D M, Skoff R P
Department of Neurology, Wayne State University School of Medicine, Detroit, Michigan 48201.
Neurochem Res. 1994 Aug;19(8):1013-22. doi: 10.1007/BF00968711.
Membrane fractions and chloroform-methanol (C-M) extracts of jimpy (jp) and normal CNS at 17-20 days were examined by immunoblot and sequence analysis to determine whether myelin proteolipid protein (FLP) or DM-20 could be detected in jp CNS. No reactivity was detected in jp samples with several PLP antibodies (Abs) except with one Ab to amino acids 109-128 of normal PLP. Proteins in the immunoreactive bands approximately 26 M(r) comigrating with PLP were sequenced for the first 10-12 residues. A sequence corresponding to PLP was found in normal CNS, as expected, but not in the band from jp CNS. Our results provide no evidence for an aberrant form of PLP in jp CNS at 17-20 days. This and other studies suggest that the abnormalities in jp brain are not due to toxicity of the mutant jp PLP/DM-20 proteins. Interestingly, a sequence identical to the amino terminus of the mature proton channel subunit 9 of mitochondrial F0 ATPase was detected in the immunoreactive bands approximately 26 M(r) in both normal and jp samples. This identification was supported by reactivity with an Ab to the F0 subunit and by labeling with dicyclohexylcarbodiimide (DCCD). In contrast to PLP isolated from whole CNS, PLP isolated from myelin was devoid of F0 subunit 9 based on sequence analysis and lack of reactivity with an Ab to the F0 subunit, yet still reacted with DCCD. This finding rules out the possibility that contaminating F0 ATPase gives rise to the DCCD binding exhibited by PLP and confirms the possibility that PLP has proton channel activity, as suggested by Lin and Lees (1,2).
在17 - 20日龄时,对jimpy(jp)小鼠和正常中枢神经系统(CNS)的膜组分以及氯仿 - 甲醇(C - M)提取物进行免疫印迹和序列分析,以确定在jp中枢神经系统中是否能检测到髓磷脂蛋白脂蛋白(FLP)或DM - 20。除了一种针对正常PLP氨基酸109 - 128的抗体外,用几种PLP抗体(Abs)检测jp样本时未检测到反应性。对与PLP共迁移的约26 M(r)免疫反应条带中的蛋白质进行了前10 - 12个残基的测序。正如预期的那样,在正常中枢神经系统中发现了与PLP对应的序列,但在jp中枢神经系统的条带中未发现。我们的结果没有提供证据表明在17 - 20日龄的jp中枢神经系统中存在异常形式的PLP。这项研究和其他研究表明,jp脑的异常并非由于突变的jp PLP/DM - 20蛋白的毒性。有趣的是,在正常和jp样本中约26 M(r)的免疫反应条带中都检测到了与线粒体F0 ATPase成熟质子通道亚基9的氨基末端相同的序列。与F0亚基抗体的反应性以及二环己基碳二亚胺(DCCD)标记支持了这一鉴定。与从整个中枢神经系统分离的PLP相比,基于序列分析和与F0亚基抗体缺乏反应性,从髓磷脂中分离的PLP不含F0亚基9,但仍与DCCD反应。这一发现排除了污染的F0 ATPase导致PLP表现出DCCD结合的可能性,并证实了PLP具有质子通道活性的可能性,正如Lin和Lees(1,2)所建议的那样。