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◆ iMeta2026-09-08

Decoding sequence recognition code of nucleic acid-binding proteins of human-infecting DNA viruses.

Meifang Tang, Shifei Yang, Haiqian Ma, Ruoying Guo, Jie Chen, Hui Zhang, Jinghan Zhang, Wei Sun, Yun Wei, Ligang Fan, Jian Yan

原始摘要(英文原文)· Original abstract
Human-infecting DNA viruses remain major health threats, yet the DNA-recognition mechanisms of their nucleic acid-binding proteins (NBPs) are poorly understood. Here, we systematically profiled 103 viral NBPs from human-infecting DNA viruses, with three NBPs from non-human-infecting DNA viruses as controls, using high-throughput screening. This analysis identified diverse DNA-binding motifs and specificity modules, including convergent recognition of a conserved CCACC motif across phylogenetically distant viruses. Notably, viral NBP binding-site distributions varied with genome size, and several NBPs from small-genome viruses showed enrichment on mitochondrial DNA. Functional assays further supported their mitochondrial association and effects on mitochondrial membrane potential. By integrating an ivTRT-based ssDNA-SELEX workflow, we further found that ssDNA viral NBPs recognize dimer-like and inverted-repeat sequences with potential to form stem-loop structures. Collectively, this study constructs a comprehensive viral NBP DNA-recognition atlas, offering a fundamental resource for elucidating viral genome recognition mechanisms, virus-mitochondria interactions, and developing future antiviral strategies.
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Decoding sequence recognition code of nucleic acid-binding proteins of human-infecting DNA viruses. — 科研速览 Science Skim