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小鼠前B细胞系70Z/3中IgM合成的调控

Control of IgM synthesis in the murine pre-B cell line, 70Z/3'.

作者信息

Mains P E, Sibley C H

出版信息

J Immunol. 1982 Apr;128(4):1664-70.

PMID:6801117
Abstract

The murine 70Z/3 tumor resembles a pre-B cell in synthesizing only intracellular mu-chains and no detectable light chain. However, one kappa gene is already rearranged, and after overnight incubation with lipopolysaccharide (LPS), most of the cells are induced to synthesize light chain. The induced cells display IgM on their surface, but do not secrete IgM. Thus, 70Z/3 cells resemble cells poised at the pre-B cell/B lymphocyte border. We have examined synthesis and post-translational modification of mu-chains in uninduced and induced 70Z/3 cells. Isolation of mu-chains and peptide maps demonstrated that both populations synthesize intracellular forms that correspond to membrane-specific mum and secretion-specific mus chains. These intracellular forms have completed only the first of the two glycosylation steps characteristic of eukaryotic cells. After induction by LPS, L chain synthesis commences, mum and mus synthesis are both increased twofold to threefold (due to an increased rate of synthesis rather than decreased degradation), and both complex with L chain to form mu2L2 tetramers. Furthermore, the glycosylation of a subset of the mum chains is completed, and these are placed on the membrane. However, unglycosylated mu2L2 tetramers can be placed on the membrane, so glycosylation is not a requirement. These data suggest that L chain may not be sufficient for externalization of mum and mus chains. These data support the idea that the controls of membrane placement and secretion of mu chains are post-translational and that different mechanisms operate for mum and mus chains.

摘要

小鼠70Z/3肿瘤细胞类似于前B细胞,仅合成细胞内的μ链,未检测到轻链。然而,一个κ基因已经重排,在用脂多糖(LPS)过夜孵育后,大多数细胞被诱导合成轻链。诱导后的细胞在其表面显示IgM,但不分泌IgM。因此,70Z/3细胞类似于处于前B细胞/B淋巴细胞边界的细胞。我们研究了未诱导和诱导的70Z/3细胞中μ链的合成及翻译后修饰。μ链的分离和肽图分析表明,这两种细胞群体都合成细胞内形式的μ链,分别对应于膜特异性的μm和分泌特异性的μs链。这些细胞内形式仅完成了真核细胞典型的两个糖基化步骤中的第一步。LPS诱导后,轻链合成开始,μm和μs的合成均增加两倍至三倍(原因是合成速率增加而非降解减少),并且二者都与轻链结合形成μ2L2四聚体。此外,一部分μm链的糖基化完成,并被置于细胞膜上。然而,未糖基化的μ2L2四聚体也可以置于细胞膜上,所以糖基化并非必需条件。这些数据表明轻链可能不足以使μm和μs链外化。这些数据支持这样的观点,即μ链的膜定位和分泌控制是翻译后水平的,并且μm和μs链的作用机制不同。

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