Norvell A, Birkeland M L, Carman J, Sillman A L, Wechsler-Reva R, Monroe J G
Department of Pathology and Laboratory Medicine, University of Pennsylvania School of Medicine, Philadelphia 19104, USA.
Immunol Res. 1996;15(3):191-207. doi: 10.1007/BF02918249.
Encounter with antigen by newly developing antigen receptor-positive B cells leads to negative selection. This process positions the B cell antigen receptor (BCR) in a central role for initiating the process of negative selection and suggests developmental regulation of its signaling. The observation that immature B cells are more susceptible to negative selection than are mature B cells has been demonstrated in a number of in vitro and in vivo model systems and support the idea of developmental regulation of BCR-initiated responses. Since identical antigen receptors are expressed on immature and mature B cells, the critical fate-determining distinction between these developmental stages must lie downstream of the receptor-ligand interaction itself, in the form of different BCR-linked signaling processes or with different secondary events occurring subsequent to BCR cross-linking. To address the first possibility, our laboratory and others have sought to define the differences in BCR-mediated signal transduction in immature and mature B lymphocytes. In this review article we will discuss current in vitro systems to study this question in primary, nontransformed murine B lymphocytes. In addition, we will discuss our previously published work in order to illustrate how these model systems have been useful in beginning to unravel the molecular basis for immune B cell negative selection and tolerance.
新发育的抗原受体阳性B细胞与抗原相遇会导致阴性选择。这一过程使B细胞抗原受体(BCR)在启动阴性选择过程中发挥核心作用,并提示其信号传导存在发育调控。在许多体外和体内模型系统中都已证明,未成熟B细胞比成熟B细胞更容易受到阴性选择的影响,这支持了BCR启动反应存在发育调控的观点。由于未成熟和成熟B细胞表达相同的抗原受体,因此这些发育阶段之间决定命运的关键区别必定存在于受体 - 配体相互作用本身的下游,表现为不同BCR相关信号传导过程的形式,或者在BCR交联后发生不同的继发事件。为了解决第一种可能性,我们实验室和其他研究团队试图确定未成熟和成熟B淋巴细胞中BCR介导的信号转导差异。在这篇综述文章中,我们将讨论当前用于在原代、未转化的小鼠B淋巴细胞中研究该问题的体外系统。此外,我们将讨论我们之前发表的工作,以说明这些模型系统如何有助于初步揭示免疫B细胞阴性选择和耐受的分子基础。