牛白血病病毒基因组的结构特征:综述

O. Yu. Fomenko
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引用次数: 0

摘要

牛地方性白血病是一种由含RNA的德尔塔逆转录病毒属病毒引起的慢性感染性疾病。尽管实施了各种消除白血病的计划,但这种疾病仍然在地球上广泛传播,并继续造成重大的经济损失。很大一部分感染BLV的牛仍然是该病毒的无症状携带者,这使诊断复杂化,并助长了该疾病在牛群中的传播。BLV基因组的结构通常是典型的逆转录病毒。它由编码结构蛋白、病毒酶和调控元件的基因组成,两侧是相同的长末端重复序列。酶和结构蛋白编码基因(gag、pro、pol和env)在病毒的生命周期中起着至关重要的作用,影响其传染性和病毒粒子的产生。tax和rex调控基因调控病毒转录、转录本从细胞核向细胞质输出和疾病进展。原病毒DNA拷贝数的增加主要不是由于病毒逆转录酶的功能,而是由于受影响的B细胞亚群(主要是CD5+ IgM+)的克隆繁殖。这一特点增加了BLV病毒的遗传稳定性。病毒基因组的这些特性使得开发各种PCR测试系统成为可能。这种系统的广泛实施使疾病携带者能够在早期阶段被发现,这将有助于有效实施国家根除牛白血病计划。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural characteristics of the bovine leukemia virus genome: A mini review
Enzootic bovine leukemia is an infectious disease with a chronic course caused by an RNA‑containing virus of the genus Deltaretrovirus . Despite the implementation of various programs for the elimination of leukemia, the disease is still widespread on the planet and continues to cause significant economic damage. A large proportion of BLV‑infected cattle remain to be asymptomatic carriers of the virus, which complicates diagnosis and contributes to the spread of the disease in the herd. The structure of the BLV genome is generally typical of retroviruses. It consists of genes encoding structural proteins, viral enzymes and regulatory elements flanked on both sides by identical long terminal repeats. The enzyme and structural protein coding genes ( gag , pro , pol , and env ) play a crucial role in the life cycle of the virus, influencing its infectivity and virion production. The tax and rex regulatory genes regulate viral transcription, export of transcripts from the nucleus to the cytoplasm, and disease progression. The increase in the number of copies of proviral DNA occurs mainly not due to the functioning of the virus reverse transcriptase, but because of clonal reproduction of the affected subpopulations of B‑cells, mainly CD5+ IgM+. This feature provides increased genetic stability of the BLV virus. These properties of the viral genome allow the development of a variety of PCR test systems. The widespread implementation of such systems enables the detection of carriers of the disease at early stages, which should contribute to the effective implementation of national programs to eradicate bovine leukemia.
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