The Role of Codon Usage, tRNA Availability, and Cell Proliferation in EBV Latency and (Re)Activation.

IF 1.2 Q4 GENETICS & HEREDITY Global Medical Genetics Pub Date : 2022-09-15 eCollection Date: 2022-09-01 DOI:10.1055/s-0042-1751301
Darja Kanduc
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Abstract

Epstein-Barr nuclear antigen 1 (EBNA1) protein synthesis is inhibited during Epstein-Barr virus (EBV) latency and is resumed in EBV (re)activation. In analyzing the molecular mechanisms underpinning the translation of EBNA1 in the human host, this article deals with two orders of data. First, it shows that the heavily biased codon usage of the EBNA1 open reading frame cannot be translated due to its noncompliance with the human codon usage pattern and the corresponding tRNA pool. The EBNA1 codon bias resides in the sequence composed exclusively of glycine and alanine, i.e., the Gly-Ala repeat (GAR). Removal of the nucleotide sequence coding for GAR results in an EBNA1 codon usage pattern with a lower codon bias, thus conferring translatability to EBNA1. Second, the data bring cell proliferation to the fore as a conditio sine qua non for qualitatively and quantitatively modifying the host's tRNA pool as required by the translational needs of EBNA1, thus enabling viral reactivation. Taken together, the present work provides a biochemical mechanism for the pathogen's shift from latency to (re)activation and confirms the role of human codon usage as a first-line tool of innate immunity in inhibiting pathogens' expression. Immunologically, this study cautions against using codon optimization and proliferation-inducing substances such as glucocorticoids and adjuvants, which can (re)activate the otherwise quiescent, asymptomatic, and innocuous EBV infection. Lastly, the data pose the question whether the causal pathogenic role attributed to EBV should instead be ascribed to the carcinogenesis-associated cellular proliferation.

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密码子使用、tRNA可用性和细胞增殖在EBV潜伏期和(再)激活中的作用。
Epstein-Barr核抗原1 (EBNA1)蛋白的合成在eb病毒(EBV)潜伏期被抑制,并在EBV(再)激活时恢复。在分析支持人类宿主中EBNA1翻译的分子机制时,本文涉及两级数据。首先,它表明EBNA1开放阅读框的密码子使用严重偏倚,由于它不符合人类密码子使用模式和相应的tRNA池而无法翻译。EBNA1密码子偏倚存在于仅由甘氨酸和丙氨酸组成的序列中,即Gly-Ala重复序列(GAR)。去除编码GAR的核苷酸序列导致EBNA1密码子使用模式具有较低的密码子偏差,从而赋予EBNA1可译性。其次,这些数据将细胞增殖作为定性和定量地修改宿主tRNA池以满足EBNA1翻译需求的必要条件,从而使病毒再激活成为可能。综上所述,本研究为病原体从潜伏期到(再)激活的转变提供了生化机制,并证实了人类密码子的使用作为先天免疫抑制病原体表达的一线工具的作用。在免疫学上,本研究警告不要使用密码子优化和增殖诱导物质,如糖皮质激素和佐剂,它们可以(重新)激活原本静止、无症状和无害的EBV感染。最后,这些数据提出了一个问题,即EBV的致病作用是否应该归因于与癌变相关的细胞增殖。
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来源期刊
Global Medical Genetics
Global Medical Genetics GENETICS & HEREDITY-
自引率
11.80%
发文量
30
审稿时长
14 weeks
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