Xu Moping, Liu Xiaoyang, Wang Miao, Luo Tingting, Gao Yawei, Liu Jun, Shi Jiejun
Key Laboratory of Spine and Spinal Cord Injury Repair and Regeneration of the Ministry of Education, Orthopaedic Department of Tongji Hospital, Tongji University, 389 Xincun Road, Shanghai 200065, China.
Frontier Science Center for Stem Cell Research, Tongji University, 1239 Siping Road, Shanghai 200092, China.
Nucleic Acids Res. 2025 Jan 11;53(2). doi: 10.1093/nar/gkae1201.
Utilizing base-conversion (BC) techniques, single-base resolution profiling of RNA and DNA modifications has significantly advanced. BC strategies range from one-way conversions (e.g. cytosine-to-thymine for 5-methylcytosine, adenine-to-guanine for N6-methyladenosine), to multi-way conversions (e.g. adenine to cytosine/guanine/thymine for N1-methyladenosine) and deletion-induced conversions (e.g. pseudouridine-to-deletion). Existing sequence aligners struggle with these diverse conversions, often leading to misaligning or inefficiency. We introduce BASAL (BAse-conversion Sequencing ALigner), which leverages bit-masking technology to accurately calculate mismatch penalties and supports all BC strategies. BASAL outperforms state-of-the-art tools in both mapping accuracy and efficiency. Through simulated and real data testing, along with experimental validation, we demonstrate that BASAL excels at identifying reliable modification sites. Moreover, BASAL enhances single-cell m6A analysis, revealing cell subpopulations and a cell evolutionary direction that align with biological functions, which other aligners fall short. BASAL's versatility establishes it as a universal aligner for RNA and DNA modification sequencing, facilitating groundbreaking discoveries in epigenomics and epitranscriptomics.
利用碱基转换(BC)技术,RNA和DNA修饰的单碱基分辨率分析取得了显著进展。BC策略涵盖从单向转换(例如,将5-甲基胞嘧啶的胞嘧啶转换为胸腺嘧啶,将N6-甲基腺苷的腺嘌呤转换为鸟嘌呤)到多向转换(例如,将N1-甲基腺苷的腺嘌呤转换为胞嘧啶/鸟嘌呤/胸腺嘧啶)以及缺失诱导转换(例如,假尿苷到缺失)。现有的序列比对工具在处理这些多样的转换时存在困难,常常导致比对错误或效率低下。我们引入了BASAL(碱基转换测序比对器),它利用位掩码技术准确计算错配罚分,并支持所有BC策略。BASAL在映射准确性和效率方面均优于现有最先进的工具。通过模拟和真实数据测试以及实验验证,我们证明BASAL在识别可靠的修饰位点方面表现出色。此外,BASAL增强了单细胞m6A分析,揭示了与生物学功能相符的细胞亚群和细胞进化方向,而其他比对器则无法做到。BASAL的多功能性使其成为RNA和DNA修饰测序的通用比对器,有助于在表观基因组学和表观转录组学领域取得突破性发现。