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在C57BL/6基因背景下,由于CD22缺陷导致B淋巴细胞增殖、存活严重受损,以及c-Myc:Cullin 1泛素连接酶途径的诱导异常。

Severely impaired B lymphocyte proliferation, survival, and induction of the c-Myc:Cullin 1 ubiquitin ligase pathway resulting from CD22 deficiency on the C57BL/6 genetic background.

作者信息

Poe Jonathan C, Haas Karen M, Uchida Junji, Lee Youngkyun, Fujimoto Manabu, Tedder Thomas F

机构信息

Department of Immunology, Duke University Medical Center, Durham, NC 27710, USA.

出版信息

J Immunol. 2004 Feb 15;172(4):2100-10. doi: 10.4049/jimmunol.172.4.2100.

Abstract

Understanding the molecular mechanisms through which CD22 regulates B lymphocyte homeostasis, signal transduction, and tolerance is critical to defining normal B cell function and understanding the role of CD22 in autoimmunity. Therefore, CD22 function was examined in vivo and in vitro using B cells from CD22-deficient (CD22(-/-)) mice. Backcrossing of founder CD22(-/-) mice onto the C57BL/6 (B6) genetic background from a B6/129 mixed background resulted in a dramatically reduced B cell proliferative response following IgM ligation, characterized by a paucity of lymphoblasts and augmented apoptosis. Also, the phenotype of splenic B6 CD22(-/-) B cells was uniquely HSA(high) and IgD(low)/CD21(low) with intermediate levels of CD5 expression, although the percentages of mature and transitional B cells were normal. That B6 CD22(-/-) B cells predominantly underwent apoptosis following IgM ligation correlated with this unique tolerant phenotype, as well as defective induction of the c-Myc:Cullin 1 (CUL1) ubiquitin ligase pathway that is necessary for progression to the S phase of cell cycle. CD40 ligation compensated for CD22 deficiency by restoring lymphoblast development, proliferation, c-Myc and CUL1 expression, and protein ubiquitination/degradation in IgM-stimulated B6 CD22(-/-) B cell cultures. Thereby, this study expands our current understanding of the complex role of CD22 during B cell homeostasis and Ag responsiveness, and reveals that the impact of CD22 deficiency is dictated by the genetic background on which it is rendered. Moreover, this study defines CD22 and CD40 as the first examples of lymphocyte coreceptors that influence induction of the c-Myc:CUL1 ubiquitin ligase pathway.

摘要

了解CD22调节B淋巴细胞稳态、信号转导和耐受性的分子机制,对于明确正常B细胞功能以及理解CD22在自身免疫中的作用至关重要。因此,利用来自CD22缺陷(CD22(-/-))小鼠的B细胞,在体内和体外对CD22功能进行了研究。将初代CD22(-/-)小鼠从B6/129混合背景回交到C57BL/6(B6)遗传背景后,IgM连接后B细胞增殖反应显著降低,其特征为成淋巴细胞数量稀少且凋亡增加。此外,脾脏B6 CD22(-/-) B细胞的表型独特,HSA(高)、IgD(低)/CD21(低),CD5表达水平中等,尽管成熟和过渡性B细胞的百分比正常。IgM连接后B6 CD22(-/-) B细胞主要发生凋亡,这与这种独特的耐受表型相关,也与细胞周期进展到S期所必需的c-Myc:Cullin 1(CUL1)泛素连接酶途径的诱导缺陷有关。CD40连接通过恢复IgM刺激的B6 CD22(-/-) B细胞培养物中的成淋巴细胞发育、增殖、c-Myc和CUL1表达以及蛋白质泛素化/降解,弥补了CD22缺陷。因此,本研究扩展了我们目前对CD22在B细胞稳态和抗原反应性中的复杂作用的理解,并揭示了CD22缺陷的影响取决于其所处的遗传背景。此外,本研究将CD22和CD40定义为影响c-Myc:CUL1泛素连接酶途径诱导的淋巴细胞共受体的首个例子。

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