Jin Zhaohui, Meng Zhe, Liu Yanchao, Li Chongyang, Zhang Xuedi, Yin Yue, Gao Guanjun, Dou Kun, Huang Ying
Department of General Surgery, Shanghai Key Laboratory of Biliary Tract Disease Research, State Key Laboratory of Oncogenes and Related Genes, Xinhua Hospital, Shanghai Jiao Tong University, Shanghai, China.
School of Life Science and Technology, ShanghaiTech University, Shanghai, China.
Commun Biol. 2025 Mar 15;8(1):445. doi: 10.1038/s42003-025-07895-2.
Drosophila P75 (dP75), a homolog of the human LEDGF/p75, is crucial for oogenesis by recruiting the histone kinase Jil-1 to euchromatin and impeding H3K9me2 spreading. Like LEDGF, dP75 binds transcriptionally active chromatin, but its precise mechanism remains unclear. Here we show that its PWWP domain prefers binding to thymidine-rich DNA over GC-rich sequences. Crystal structures both in apo and ssDNA-bound states, reveal a domain-swapped homodimer. The aromatic cage, known to recognize histone methyllysine, also engages thymine. Mutations in this cage mimic dP75 knockout phenotypes, including impaired chromatin binding, transposon upregulation, and female sterility. Although dP75 maintains chromatin-bound in H3K36A mutant flies, alterations in the aromatic cage disrupt this localization, underscoring its role in DNA binding. These findings reveal how dP75 targets euchromatin through a PWWP domain that integrates histone reading and nucleotide recognition, advancing our understanding of PWWP domains.
果蝇P75(dP75)是人类LEDGF/p75的同源物,通过将组蛋白激酶Jil-1招募到常染色质并阻止H3K9me2扩散,对卵子发生至关重要。与LEDGF一样,dP75与转录活性染色质结合,但其精确机制尚不清楚。在这里,我们表明其PWWP结构域更倾向于结合富含胸腺嘧啶的DNA而非富含GC的序列。无配体和单链DNA结合状态下的晶体结构揭示了一个结构域交换同型二聚体。已知能识别组蛋白甲基赖氨酸的芳香笼也与胸腺嘧啶结合。该笼中的突变模拟了dP75敲除表型,包括染色质结合受损、转座子上调和雌性不育。尽管dP75在H3K36A突变果蝇中保持与染色质结合,但芳香笼的改变破坏了这种定位,突出了其在DNA结合中的作用。这些发现揭示了dP75如何通过一个整合组蛋白识别和核苷酸识别的PWWP结构域靶向常染色质,增进了我们对PWWP结构域的理解。