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本文引用的文献

1
Coupling DNA Damage and Repair: an Essential Safeguard during Programmed DNA Double-Strand Breaks?DNA 损伤与修复的偶联:在程序性 DNA 双链断裂期间的必要保障?
Trends Cell Biol. 2020 Feb;30(2):87-96. doi: 10.1016/j.tcb.2019.11.005. Epub 2019 Dec 6.
2
The essential elements for the noncovalent association of two DNA ends during NHEJ synapsis.非同源末端连接(NHEJ)过程中,两个 DNA 末端非共价结合的基本要素。
Nat Commun. 2019 Aug 9;10(1):3588. doi: 10.1038/s41467-019-11507-z.
3
Cernunnos/Xlf Deficiency Results in Suboptimal V(D)J Recombination and Impaired Lymphoid Development in Mice.Cernunnos/Xlf 缺陷导致小鼠 V(D)J 重组不佳和淋巴发育受损。
Front Immunol. 2019 Mar 14;10:443. doi: 10.3389/fimmu.2019.00443. eCollection 2019.
4
MRI Is a DNA Damage Response Adaptor during Classical Non-homologous End Joining.MRI 是经典非同源末端连接过程中的 DNA 损伤反应接头。
Mol Cell. 2018 Jul 19;71(2):332-342.e8. doi: 10.1016/j.molcel.2018.06.018. Epub 2018 Jul 12.
5
C-NHEJ without indels is robust and requires synergistic function of distinct XLF domains.非同源末端连接(C-NHEJ)无插入缺失,且具有稳健性,需要不同 XRCC4 结构域的协同功能。
Nat Commun. 2018 Jun 27;9(1):2484. doi: 10.1038/s41467-018-04867-5.
6
Robust DNA repair in PAXX-deficient mammalian cells.PAXX 缺陷型哺乳动物细胞中的强大 DNA 修复能力。
FEBS Open Bio. 2018 Feb 7;8(3):442-448. doi: 10.1002/2211-5463.12380. eCollection 2018 Mar.
7
Normal development of mice lacking PAXX, the paralogue of XRCC4 and XLF.缺乏PAXX(XRCC4和XLF的旁系同源物)的小鼠的正常发育。
FEBS Open Bio. 2018 Feb 4;8(3):426-434. doi: 10.1002/2211-5463.12381. eCollection 2018 Mar.
8
PAXX and Xlf interplay revealed by impaired CNS development and immunodeficiency of double KO mice.PAXX 和 Xlf 的相互作用通过双重 KO 小鼠的中枢神经系统发育障碍和免疫缺陷揭示出来。
Cell Death Differ. 2018 Feb;25(2):444-452. doi: 10.1038/cdd.2017.184. Epub 2017 Oct 27.
9
V(D)J Recombination Exploits DNA Damage Responses to Promote Immunity.V(D)J重组利用DNA损伤反应来促进免疫。
Trends Genet. 2017 Jul;33(7):479-489. doi: 10.1016/j.tig.2017.04.006. Epub 2017 May 19.
10
Non-homologous DNA end joining and alternative pathways to double-strand break repair.非同源DNA末端连接及双链断裂修复的替代途径。
Nat Rev Mol Cell Biol. 2017 Aug;18(8):495-506. doi: 10.1038/nrm.2017.48. Epub 2017 May 17.

研究 DNA 修复蛋白 PAXX 和 XLF 缺失对血淋巴系统发育和成熟的影响。

An study of the impact of deficiency in the DNA repair proteins PAXX and XLF on development and maturation of the hemolymphoid system.

机构信息

Laboratory of Genome Dynamics in the Immune System, Imagine Institute, INSERM UMR 1163, Université de Paris, 75015 Paris, France.

Laboratory of Genome Dynamics in the Immune System, Imagine Institute, INSERM UMR 1163, Université de Paris, 75015 Paris, France.

出版信息

J Biol Chem. 2020 Feb 21;295(8):2398-2406. doi: 10.1074/jbc.AC119.010924. Epub 2020 Jan 8.

DOI:10.1074/jbc.AC119.010924
PMID:31915249
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7039558/
Abstract

Repair of DNA double-strand breaks by the nonhomologous end joining pathway is central for proper development of the adaptive immune system. This repair pathway involves eight factors, including XRCC4-like factor (XLF)/Cernunnos and the paralog of XRCC4 and XLF, PAXX nonhomologous end joining factor (PAXX). Xlf and Paxx mice are viable and exhibit only a mild immunophenotype. However, mice lacking both PAXX and XLF are embryonic lethal because postmitotic neurons undergo massive apoptosis in embryos. To decipher the roles of PAXX and XLF in both variable, diversity, and joining recombination and immunoglobulin class switch recombination, here, using Cre/lox-specific deletion to prevent double-KO embryonic lethality, we developed two mouse models of a conditional Xlf KO in a Paxx background. Cre expressed under control of the iVav or CD21 promoter enabled Xlf deletion in early hematopoietic progenitors and splenic mature B cells, respectively. We demonstrate the XLF and PAXX interplay during variable, diversity, and joining recombination but not during class switch recombination, for which PAXX appeared to be fully dispensable. Xlf/Paxx double KO in hematopoietic progenitors resulted in a shorter lifespan associated with onset of thymic lymphomas, revealing a genome caretaking function of XLF/PAXX.

摘要

非同源末端连接途径修复 DNA 双链断裂对于适应性免疫系统的正常发育至关重要。该修复途径涉及 8 个因子,包括 XRCC4 样因子 (XLF)/Cernunnos 和 XRCC4 和 XLF 的同源物,PAXX 非同源末端连接因子 (PAXX)。Xlf 和 Paxx 小鼠具有活力,仅表现出轻微的免疫表型。然而,缺乏 PAXX 和 XLF 的小鼠是胚胎致死的,因为有丝分裂后神经元在胚胎中经历大量凋亡。为了解析 PAXX 和 XLF 在可变、多样性和连接重排以及免疫球蛋白类别转换重排中的作用,我们使用 Cre/lox 特异性缺失来防止双 KO 胚胎致死,在此基础上,我们构建了两种条件性 Xlf KO 在 Paxx 背景下的小鼠模型。在 iVav 或 CD21 启动子的控制下表达 Cre,分别使早期造血祖细胞和脾成熟 B 细胞中的 Xlf 缺失。我们证明了 XLF 和 PAXX 在可变、多样性和连接重排过程中的相互作用,但在类别转换重排过程中没有作用,PAXX 在类别转换重排中似乎是完全可有可无的。造血祖细胞中的 Xlf/Paxx 双 KO 导致寿命缩短,并伴有胸腺淋巴瘤的发生,揭示了 XLF/PAXX 的基因组维护功能。