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前B细胞上表达的μκ B细胞受体的信号转导与成熟B细胞上B细胞受体的信号转导不同。

Signal transduction through mu kappa B-cell receptors expressed on pre-B cells is different from that through B-cell receptors on mature B cells.

作者信息

Nakamura T, Koyama M, Yoneyama A, Higashihara M, Kawakami T, Yamamura H, Sada K, Okumura K, Kurokawa K

机构信息

Department of Infectious Diseases and Applied Immunology, University of Tokyo, Japan.

出版信息

Immunology. 1996 Aug;88(4):593-9. doi: 10.1046/j.1365-2567.1996.d01-681.x.

Abstract

We introduced kappa light chain genes into pre-B cells to increase the surface mu HC expression, and established transfectants expressing mature type of B-cell receptors (BCR) on pre-B-cell surfaces. Since the cytoplasmic conformations of the reconstituted BCR and intrinsic pre-B-cell receptor (pre-BCR) are identical, they would be connected with the identical signal transduction pathways in pre-B cells. By using the transfectants, we revealed that the reconstituted BCR on pre-B cells was functionally equivalent to BCR on mature B cells in terms of the induction of intracellular Ca++ mobilization. However, we found that the signal-transduction pathways through BCR on pre-B cells were quantitatively different from those mature B cells in two ways. First, cross-linkage of the reconstituted BCR on pre-B cells induced preferential tyrosine phosphorylation of p120 and p100, which was not observed when BCR on mature B cells was cross-linked. Second, BCR in pre-B cells was physically associated with a larger amount of phosphatidylinositol-3 kinase (PI-3K) than BCR in mature B cells in spite of the fact that both pre-B and B cells expressed a similar amount of PI-3K in cytoplasm. Signals through pre-BCR and BCR are known to cause distinct biological effects in B-cell development. The biochemical features in the downstream of reconstituted BCR on pre-B cells, which we revealed in this study, will be of help in understanding the mechanism of functional differences between pre-BCR and BCR.

摘要

我们将κ轻链基因导入前B细胞以增加表面μ重链(HC)的表达,并在前B细胞表面建立了表达成熟型B细胞受体(BCR)的转染子。由于重构的BCR和内在的前B细胞受体(pre-BCR)的细胞质构象相同,它们在前B细胞中会与相同的信号转导途径相连。通过使用这些转染子,我们发现前B细胞上重构的BCR在诱导细胞内Ca++动员方面在功能上等同于成熟B细胞上的BCR。然而,我们发现前B细胞上通过BCR的信号转导途径在两个方面与成熟B细胞的信号转导途径在数量上有所不同。首先,前B细胞上重构的BCR的交联诱导了p120和p100的优先酪氨酸磷酸化,而成熟B细胞上的BCR交联时未观察到这种情况。其次,尽管前B细胞和B细胞在细胞质中表达的磷脂酰肌醇-3激酶(PI-3K)量相似,但前B细胞中的BCR与PI-3K的物理结合量比成熟B细胞中的BCR更多。已知通过pre-BCR和BCR的信号在B细胞发育中会引起不同的生物学效应。我们在本研究中揭示的前B细胞上重构的BCR下游的生化特征,将有助于理解pre-BCR和BCR之间功能差异的机制。

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