DNA
逆转录酶
生物
互补DNA
DNA聚合酶
聚合酶
核酸
核糖核酸
脱氧腺苷
DNA合成
RNA定向DNA聚合酶
DNA复制
生物化学
抄写(语言学)
酶
细胞生物学
重组DNA
胞苷脱氨酶
分子生物学
核蛋白
核苷酸
DNA修复
整合酶
寡核苷酸
遗传学
大肠杆菌
DNA钳
初级
记录
解旋酶
核苷酸转移酶
功能(生物学)
免疫系统
Cas9
化学
编码链
A-DNA
作者
Megan Wang,Kanta Yoneyama,Rimantė Žedaveinytė,Junichiro Ishikawa,Stephen Tang,Hoang C Le,Tanner Wiegand,J A Santiago Ramirez,Naoto Nagahata,Yanzhe Ma,Dennis J. Zhang,Erick Helmeczi,Mirela Berisa,Marko Jovanovic,Masahiro Hiraizumi,Keitaro Yamashita,Hiroshi Nishimasu,Samuel Henry Sternberg
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2026-05-05
标识
DOI:10.64898/2026.05.04.722794
摘要
Defense-associated reverse transcriptase (DRT) systems mediate antiviral immunity through distinct modes of cDNA synthesis: Class 1 DRTs catalyze untemplated synthesis, whereas Class 2 DRTs polymerize noncoding RNA-templated products. However, how these distinct modes drive defense remains unclear. Here, we report that DRT3 immunity arises when Class 1 and Class 2 RT activities cooperate to produce self-complementary double-stranded DNA (dsDNA). DRT3a uses a 5'-ACACAC-3' RNA template to synthesize poly-(dTdG) repeats, whereas DRT3b synthesizes poly-(dCdA) repeats without any nucleic acid template. Cryo-electron microscopy reveals that DRT3b forms a hexamer and uses active-site-adjacent residues as deoxyadenosine and deoxycytidine gates to enforce alternating nucleotide addition, representing a unique example of amino acid-templated DNA polymerization. DRT3 is toxic in cells lacking RecBCD, implicating host recombination machinery in limiting dsDNA accumulation, and the phage-encoded RecBCD inhibitor Gam triggers DRT3-mediated abortive infection. These findings reveal how two polymerases with distinct templating strategies generate complementary DNA for defense.
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