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洛伐他汀和5'-甲硫腺苷可抑制脂多糖诱导的小鼠70Z/3前B淋巴细胞中核因子-κB的激活:蛋白质异戊二烯化和羧甲基化反应的作用

Lipopolysaccharide-induced NF-kappa B activation in mouse 70Z/3 pre-B lymphocytes is inhibited by mevinolin and 5'-methylthioadenosine: roles of protein isoprenylation and carboxyl methylation reactions.

作者信息

Law R E, Stimmel J B, Damore M A, Carter C, Clarke S, Wall R

机构信息

Department of Microbiology and Immunology, University of California, Los Angeles 90024.

出版信息

Mol Cell Biol. 1992 Jan;12(1):103-11. doi: 10.1128/mcb.12.1.103-111.1992.

Abstract

We show that both the lipopolysaccharide (LPS)-induced activation of NF-kappa DNA binding and kappa gene expression are blocked by treating murine pre-B lymphocyte 70Z/3 cells with 5'-methylthioadenosine (MTA), an inhibitor of several S-adenosylmethionine-dependent methylation reactions. We further show that the LPS-induced incorporation of radioactivity from [methyl-3H]methionine into methyl ester-like linkages on a group of membrane polypeptides is also inhibited by MTA treatment, suggesting the involvement of protein methylation reactions in the LPS signal transduction pathway. We also find that NF-kappa B and kappa gene activation in LPS-treated 70Z/3 cells is blocked by mevinolin, an inhibitor that prevents protein isoprenylation. Interestingly, mevinolin-treated cells also exhibited a marked reduction in the methylation of membrane proteins. Neither MTA nor mevinolin significantly inhibited NF-kappa B activation by phorbol myristate acetate, suggesting that these agents act early in signal transduction. These results provide the first evidence that carboxyl methylated and/or isoprenylated proteins play an essential role in the LPS-signaling pathway.

摘要

我们发现,用5'-甲硫腺苷(MTA)处理小鼠前B淋巴细胞70Z/3细胞,可阻断脂多糖(LPS)诱导的NF-κB DNA结合激活及κ基因表达,MTA是几种依赖S-腺苷甲硫氨酸的甲基化反应的抑制剂。我们进一步表明,MTA处理也抑制了LPS诱导的放射性[甲基-³H]甲硫氨酸掺入一组膜多肽上的甲酯样键,这表明蛋白质甲基化反应参与了LPS信号转导途径。我们还发现,洛伐他汀可阻断LPS处理的70Z/3细胞中NF-κB和κ基因的激活,洛伐他汀是一种阻止蛋白质异戊二烯化的抑制剂。有趣的是,经洛伐他汀处理的细胞中膜蛋白的甲基化也显著降低。MTA和洛伐他汀均未显著抑制佛波酯肉豆蔻酸酯乙酸盐对NF-κB的激活,这表明这些试剂在信号转导早期起作用。这些结果首次证明了羧基甲基化和/或异戊二烯化的蛋白质在LPS信号通路中起重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9d0/364073/401fc25b23a8/molcellb00025-0127-a.jpg

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