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Coordinated signals from the DNA repair enzymes PARP-1 and PARP-2 promotes B-cell development and function

机译:来自DNA修复酶PARP-1和PARP-2的协调信号促进了B细胞发育和功能

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摘要

Poly (ADP-ribose) polymerase (PARP)-1 and PARP-2 regulate the function of various DNA-interacting proteins by transferring ADP-ribose emerging from catalytic cleavage of cellular beta-NAD(+) . Hence, mice lacking PARP-1 or PARP-2 show DNA perturbations ranging from altered DNA integrity to impaired DNA repair. These effects stem from the central role that PARP-1 and PARP-2 have on the cellular response to DNA damage. Failure to mount a proper response culminates in cell death. Accordingly, PARP inhibitors are emerging as promising drugs in cancer therapy. However, the full impact of these inhibitors on immunity, including B-cell antibody production, remains elusive. Given that mice carrying dual PARP-1 and PARP-2 deficiency develop early embryonic lethality, we crossed PARP-1-deficient mice with mice carrying a B-cell-conditional PARP-2 gene deletion. We found that the resulting dually PARP-1 and PARP-2-deficient mice had perturbed bone-marrow B-cell development as well as profound peripheral depletion of transitional and follicular but not marginal zone B-cells. Of note, bonemarrow B-cell progenitors and peripheral mature B-cells were conserved in mice carrying either PARP-1 or PARP-2 deficiency. In dually PARP-1 and PARP-2-deficient mice, B-cell lymphopenia was associated with increased DNA damage and accentuated death in actively proliferating B-cells. Moreover, dual PARP-1 and PARP-2 deficiency impaired antibody responses to T-independent carbohydrate but not to T-dependent protein antigens. Notwithstanding the pivotal role of PARP-1 and PARP-2 in DNA repair, combined PARP-1 and PARP-2 deficiency did not perturb the DNA-editing processes required for the generation of a protective antibody repertoire, including Ig V(D)J gene recombination and IgM-to-IgG class switching. These findings provide key information as to the potential impact of PARP inhibitors on humoral immunity, which will facilitate the development of safer PARP-targeting regimens against cancer.
机译:聚(ADP-核糖)聚合酶(PARP)-1和PARP-2通过转移来自致催化裂解(+)的催化切割出来的ADP核糖来调节各种DNA相互作用蛋白的功能。因此,缺乏PARP-1或PARP-2的小鼠显示DNA扰动范围从改变的DNA完整性损害DNA修复。这些效果源于PARP-1和PARP-2对DNA损伤的细胞反应的中心作用。未能在细胞死亡中安装适当的反应。因此,PARP抑制剂正在出现作为癌症治疗中有希望的药物。然而,这些抑制剂对包括B细胞抗体产生的免疫力的完全影响仍然是难以捉摸的。鉴于携带双PARP-1和PARP-2缺乏的小鼠发育早期胚胎致死态,我们用携带B细胞条件PARP-2基因缺失的小鼠跨越PARP-1缺陷小鼠。我们发现所得的双重PARP-1和PARP-2缺陷小鼠具有扰动的骨髓B细胞发育以及过渡和滤泡但不是边缘区域B细胞的深刻外周耗尽。值得注意的是,在携带PARP-1或PARP-2缺乏的小鼠中保存了Bonemarrow B细胞祖细胞和外周成熟B细胞。在PARP-1和PARP-2缺乏小鼠中,B细胞淋巴细胞症与DNA损伤增加相关,并在积极增殖的B细胞中突出死亡。此外,双PARP-1和PARP-2缺乏症对T型碳水化合物的抗体反应受损,但不依赖于依赖性蛋白质抗原。尽管PARP-1和PARP-2在DNA修复中的关键作用,但组合的PARP-1和PARP-2缺乏症不扰乱产生保护抗体曲目所需的DNA编辑过程,包括IG V(D)J.基因重组和IgM-〜IgG级切换。这些发现提供了对PARP抑制剂对体液免疫的潜在影响的关键信息,这将促进更安全的PARP靶向治疗癌症方案的发展。

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