Genomic Medicine, Infection Biology Program, Global Center for Pathogen & Human Health Research, Lerner Research Institute, Cleveland Clinic, Cleveland, OH 44195, USA.
Microbiology and Immunology, Upstate Medical University-State University of New York (SUNY), Syracuse, NY 13210, USA.
Viruses. 2022 Jun 12;14(6):1280. doi: 10.3390/v14061280.
Human cytomegalovirus (CMV) is a ubiquitous pathogen that latently resides in hematopoietic cells. Latently infected individuals with dysfunctional immune systems often experience CMV reactivation, which can cause devastating disease and mortality. While factors dictating the balance between latency and reactivation are not completely understood, CMV US28 is required for maintaining latent infection, and viral mutants that alter US28 function result in a lytic-like, rather than latent, infection in hematopoietic cells. In turn, viral lytic factors alter the host cell, making it challenging to characterize the US28-specific changes in the cellular milieu. To circumvent this, we generated a temperature-sensitive TB40/E recombinant virus, TB40/EC510G (C510G), into which we engineered an amino acid change at position 510 (C510G) of IE2, as previously described in the CMV Towne strain. Using C510G, we then deleted the US28 ORF, termed C510G-US28Δ. Consistent with previous findings, C510G-US28Δ fails to undergo latency in Kasumi-3 cells at the permissive temperature. However, parallel cultures maintained at the non-permissive temperature showed a significant reduction in infectious center frequency, as measured by limiting dilution assay. Thus, we generated a new US28 mutant virus for use as a tool to study US28-specific changes in latently infected hematopoietic cells in the absence of induced lytic replication.
人类巨细胞病毒 (CMV) 是一种普遍存在的病原体,潜伏在造血细胞中。免疫功能失调的潜伏感染个体经常经历 CMV 再激活,这可能导致毁灭性的疾病和死亡。虽然决定潜伏和再激活之间平衡的因素尚未完全理解,但 CMV US28 是维持潜伏感染所必需的,改变 US28 功能的病毒突变体导致造血细胞中出现裂解样而不是潜伏感染。反过来,病毒裂解因子改变宿主细胞,使得难以表征细胞环境中 US28 特异性变化。为了避免这种情况,我们生成了一种温度敏感的 TB40/E 重组病毒,TB40/EC510G(C510G),我们在其中对 IE2 的位置 510 进行了氨基酸改变(C510G),如先前在 CMV Towne 株中所述。使用 C510G,我们删除了 US28 ORF,称为 C510G-US28Δ。与先前的发现一致,C510G-US28Δ 在允许温度下未能在 Kasumi-3 细胞中经历潜伏。然而,在非允许温度下维持的平行培养物显示出感染中心频率显著降低,如通过限制稀释测定测量。因此,我们生成了一种新的 US28 突变病毒,用作在没有诱导裂解复制的情况下研究潜伏感染造血细胞中 US28 特异性变化的工具。