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B细胞发育途径中的冗余性:c-Cbl失活通过一条不依赖B细胞连接蛋白的途径挽救早期B细胞发育。

Redundancy in B cell developmental pathways: c-Cbl inactivation rescues early B cell development through a B cell linker protein-independent pathway.

作者信息

Song Haifeng, Zhang Juan, Chiang Y Jeffrey, Siraganian Reuben P, Hodes Richard J

机构信息

Experimental Immunology Branch, National Cancer Institute, National Institutes of Health, 9000 Rockville Pike, Bethesda, MD 20892, USA.

出版信息

J Immunol. 2007 Jan 15;178(2):926-35. doi: 10.4049/jimmunol.178.2.926.

Abstract

Deficiency in the adaptor protein B cell linker protein (BLNK) results in a substantial but incomplete block in B cell development, suggesting that alternative pathways exist for B lineage differentiation. Another adaptor protein, c-Cbl, plays a negative regulatory role in several BCR-signaling pathways. We therefore investigated the role of c-Cbl during B cell development and addressed the possibility that redundancies in pathways for B cell differentiation could be further revealed by eliminating negative effects mediated by c-Cbl. Strikingly, c-Cbl inactivation reversed a number of the critical defects in early B cell differentiation that are seen in BLNK-deficient mice. c-Cbl(-/-)BLNK(-/-) mice exhibited normalized down-regulation of pre-BCR and CD43, up-regulation of MHC class II, and augmented L chain rearrangement, resulting in a successful transition from pre-B cells to immature B cells. c-Cbl inactivation also reversed the potentially tumor-predisposing hyperproliferative response of BLNK(-/-) pre-B cells to IL-7. Pre-BCR cross-linking induced enhanced and prolonged tyrosine phosphorylation in c-Cbl(-/-)BLNK(-/-) pre-BCR(+) pre-B cells compared with c-Cbl(+/-)BLNK(-/-) cells, including elevated phosphorylation of Lyn, Syk, Btk, and phospholipase C-gamma2. Our studies suggest that some, but not all, pre-BCR-triggered developmental events can be mediated by BLNK-independent pathways that are negatively regulated by c-Cbl, and further suggest that different events during early B cell development require different strength or duration of pre-BCR signaling.

摘要

衔接蛋白B细胞连接蛋白(BLNK)的缺陷会导致B细胞发育出现严重但不完全的阻滞,这表明B细胞谱系分化存在替代途径。另一种衔接蛋白c-Cbl在多种BCR信号通路中发挥负调控作用。因此,我们研究了c-Cbl在B细胞发育过程中的作用,并探讨了通过消除c-Cbl介导的负面影响是否可以进一步揭示B细胞分化途径中的冗余现象。令人惊讶的是,c-Cbl失活逆转了BLNK缺陷小鼠早期B细胞分化中出现 的一些关键缺陷。c-Cbl(-/-)BLNK(-/-)小鼠的前B细胞受体(pre-BCR)和CD43下调正常化,MHC II类分子上调,轻链重排增强,从而成功地从前B细胞过渡到未成熟B细胞。c-Cbl失活还逆转了BLNK(-/-)前B细胞对IL-7的潜在促肿瘤增殖反应。与c-Cbl(+/-)BLNK(-/-)细胞相比,前BCR交联在c-Cbl(-/-)BLNK(-/-)前BCR(+)前B细胞中诱导了增强和延长的酪氨酸磷酸化,包括Lyn、Syk、Btk和磷脂酶C-γ2磷酸化水平升高。我们的研究表明,一些但不是所有的前BCR触发的发育事件可以由不依赖BLNK的途径介导,这些途径受c-Cbl负调控,并且进一步表明早期B细胞发育过程中的不同事件需要不同强度或持续时间的前BCR信号。

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