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端粒和亚端粒 R 环与锥虫的抗原变异。

Telomere and Subtelomere R-loops and Antigenic Variation in Trypanosomes.

机构信息

Center for Gene Regulation in Health and Disease, Department of Biological, Geological, and Environmental Sciences, College of Science and Health Professions, Cleveland State University, 2121 Euclid Avenue, Cleveland, OH 44115, USA.

Center for Gene Regulation in Health and Disease, Department of Biological, Geological, and Environmental Sciences, College of Science and Health Professions, Cleveland State University, 2121 Euclid Avenue, Cleveland, OH 44115, USA; Case Comprehensive Cancer Center, Case Western Reserve University, 10900 Euclid Avenue, Cleveland, OH 44106, USA; Department of Inflammation and Immunity, Lerner Research Institute, Cleveland Clinic, 9500 Euclid Avenue, Cleveland, OH 44195, USA.

出版信息

J Mol Biol. 2020 Jul 10;432(15):4167-4185. doi: 10.1016/j.jmb.2019.10.025. Epub 2019 Nov 2.

Abstract

Trypanosoma brucei is a kinetoplastid parasite that causes African trypanosomiasis, which is fatal if left untreated. T. brucei regularly switches its major surface antigen, VSG, to evade the host immune responses. VSGs are exclusively expressed from subtelomeric expression sites (ESs) where VSG genes are flanked by upstream 70 bp repeats and downstream telomeric repeats. The telomere downstream of the active VSG is transcribed into a long-noncoding RNA (TERRA), which forms RNA:DNA hybrids (R-loops) with the telomeric DNA. At an elevated level, telomere R-loops cause more telomeric and subtelomeric double-strand breaks (DSBs) and increase VSG switching rate. In addition, stabilized R-loops are observed at the 70 bp repeats and immediately downstream of ES-linked VSGs in RNase H defective cells, which also have an increased amount of subtelomeric DSBs and more frequent VSG switching. Although subtelomere plasticity is expected to be beneficial to antigenic variation, severe defects in subtelomere integrity and stability increase cell lethality. Therefore, regulation of the telomere and 70 bp repeat R-loop levels is important for the balance between antigenic variation and cell fitness in T. brucei. In addition, the high level of the active ES transcription favors accumulation of R-loops at the telomere and 70 bp repeats, providing an intrinsic mechanism for local DSB formation, which is a strong inducer of VSG switching.

摘要

布氏锥虫是一种动基体原虫寄生虫,会引起非洲锥虫病,如果不加以治疗会致命。布氏锥虫会定期切换其主要表面抗原 VSG,以逃避宿主的免疫反应。VSGs 仅从端粒下游表达位点(ES)表达,VSG 基因被上游 70bp 重复序列和下游端粒重复序列所包围。活性 VSG 下游的端粒被转录成长非编码 RNA(TERRA),与端粒 DNA 形成 RNA:DNA 杂交(R 环)。在较高水平下,端粒 R 环会导致更多的端粒和端粒下游双链断裂(DSB),并增加 VSG 切换率。此外,在 RNase H 缺陷细胞中,在 70bp 重复序列和 ES 连接的 VSG 下游立即观察到稳定的 R 环,这些细胞也有更多的端粒下游 DSB 和更频繁的 VSG 切换。尽管端粒下游的可塑性预计对抗原变异有益,但端粒下游完整性和稳定性的严重缺陷会增加细胞致死率。因此,端粒和 70bp 重复 R 环水平的调节对于布氏锥虫中抗原变异和细胞适应性之间的平衡非常重要。此外,活性 ES 转录的高水平有利于 R 环在端粒和 70bp 重复处的积累,为局部 DSB 形成提供了内在机制,这是 VSG 切换的强烈诱导剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1688/7195242/948f1720e1d4/nihms-1542322-f0001.jpg

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