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近期对RAG诱导的染色体易位形成的见解。

Recent insights into the formation of RAG-induced chromosomal translocations.

作者信息

Brandt Vicky L, Roth David B

机构信息

Department of Pathology and Program in Molecular Pathogenesis, The Helen L. and Martin S. Kimmel Center for Biology and Medicine, Skirball Institute for Biomolecular Medicine, New York University School of Medicine, New York, NY 10016, USA.

出版信息

Adv Exp Med Biol. 2009;650:32-45. doi: 10.1007/978-1-4419-0296-2_3.

Abstract

Chromosomal translocations are found in many types of tumors, where they may be either a cause or a result of malignant transformation. In lymphoid neoplasms, however, it is dear that pathogenesis is initiated by any of a number of recurrent DNA rearrangements. These particular translocations typically place an oncogene under the regulatory control of an Ig or TCR gene promoter, dysregulating cell growth, differentiation, or apoptosis. Given that physiological DNA rearrangements (V(D)J and class switch recombination) are integral to lymphocyte development, it is critical to understand how genomic stability is maintained during these processes. Recent advances in our understanding of DNA damage signaling and repair have provided clues to the kinds of mechanisms that lead to V(D)J-mediated translocations. In turn, investigations into the regulation of V(D)J joining have illuminated a formerly obscure pathway of DNA repair known as alternative NHEJ, which is error-prone and frequently involved in translocations. In this chapter we consider recent advances in our understanding of the functions of the RAG proteins, RAG interactions with DNA repair pathways, damage signaling and chromosome biology, all of which shed light on how mistakes at different stages of V(D)J recombination might lead to leukemias and lymphomas.

摘要

染色体易位在多种肿瘤中都有发现,在这些肿瘤中,它们可能是恶性转化的原因或结果。然而,在淋巴肿瘤中,很明显发病机制是由多种反复出现的DNA重排中的任何一种引发的。这些特定的易位通常会使一个癌基因置于Ig或TCR基因启动子的调控之下,从而使细胞生长、分化或凋亡失调。鉴于生理性DNA重排(V(D)J和类别转换重组)是淋巴细胞发育所必需的,了解在这些过程中如何维持基因组稳定性至关重要。我们对DNA损伤信号传导和修复的理解的最新进展为导致V(D)J介导的易位的机制类型提供了线索。反过来,对V(D)J连接调控的研究揭示了一种以前鲜为人知的DNA修复途径,称为替代性非同源末端连接,它容易出错且经常参与易位。在本章中,我们将探讨我们对RAG蛋白功能、RAG与DNA修复途径的相互作用、损伤信号传导和染色体生物学的理解的最新进展,所有这些都有助于阐明V(D)J重组不同阶段的错误如何导致白血病和淋巴瘤。

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