Suppr超能文献

人类B细胞抗原受体复合物的组装与细胞内运输。

Assembly and intracellular transport of the human B cell antigen receptor complex.

作者信息

Brouns G S, de Vries E, Borst J

机构信息

Division of Cellular Biochemistry, The Netherlands Cancer Institute, Amsterdam.

出版信息

Int Immunol. 1995 Mar;7(3):359-68. doi: 10.1093/intimm/7.3.359.

Abstract

The B cell antigen receptor (BCR) complex consists of transmembrane (m) Ig, in non-covalent association with a disulphide-linked heterodimer of mb-1 and B29 gene products. The MB-1-B29 heterodimer is required for deposition of the BCR at the plasma membrane, as well as for coupling of the antigen receptor to intracellular signal transduction cascades. We have performed biosynthetic labelling studies using the mature B cell line Ramos to investigate the process of assembly of the BCR components. We conclude that association of the four components, Ig-heavy chain (HC) and -light chain (LC), MB-1 and B29, is required and sufficient to permit exit of the BCR complex out of the endoplasmic reticulum (ER). With the short pulse labelling procedures used, no evidence was found for transient participation of other molecules in complex formation. A 32 kDa glycoprotein was identified, which is serologically related to MB-1, but has a more acidic isoelectric point (pl) and a protein backbone of 21 kDa, as compared with 25 kDa for MB-1. This protein did not appear to participate in BCR complex formation and is most likely degraded prior to reaching the cis-Golgi. The MB-1 component was found to be the rate-limiting step in BCR complex formation, while Ig-HC, -LC and B29 are synthesized in excess. Ig-HC and -LC form disulphide-linked tetrameric complexes within 3 min after biosynthesis, with which B29 and MB-1 components associate independently, followed by disulphide bond formation between these heterodimeric partners. While partial BCR complexes containing B29 and mlg-H2L2 tetramers are rapidly formed and have a half-life of a few hours in the ER, entry of MB-1 into these complexes controls exit out of this compartment.

摘要

B细胞抗原受体(BCR)复合物由跨膜(m)Ig组成,与mb-1和B29基因产物的二硫键连接的异二聚体非共价结合。MB-1-B29异二聚体是BCR定位于质膜所必需的,也是抗原受体与细胞内信号转导级联反应偶联所必需的。我们使用成熟的B细胞系Ramos进行了生物合成标记研究,以研究BCR组分的组装过程。我们得出结论,Ig重链(HC)和轻链(LC)、MB-1和B29这四个组分的结合是BCR复合物从内质网(ER)输出所必需且足够的。使用短脉冲标记程序,未发现有其他分子短暂参与复合物形成的证据。鉴定出一种32 kDa的糖蛋白,它与MB-1有血清学相关性,但与MB-1的25 kDa相比,其等电点(pI)更酸,蛋白质主链为21 kDa。这种蛋白质似乎不参与BCR复合物的形成,很可能在到达顺式高尔基体之前就被降解了。发现MB-1组分是BCR复合物形成中的限速步骤,而Ig-HC、-LC和B29是过量合成的。Ig-HC和-LC在生物合成后3分钟内形成二硫键连接的四聚体复合物,B29和MB-1组分独立地与之结合,随后这些异二聚体伙伴之间形成二硫键。虽然含有B29和mlg-H2L2四聚体的部分BCR复合物在ER中迅速形成且半衰期为数小时,但MB-1进入这些复合物控制着从该区室的输出。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验