Off-pore Nup98 condensates mobilize heterochromatic breaks and exclude Rad51

非孔道Nup98凝聚物可动员异染色质断裂并排除Rad51

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作者:Chiara Merigliano ,Taehyun Ryu ,Jakub Cibulka ,Chetan C Rawal ,Colby D See ,Anik Mitra ,Trevor W Reynolds ,Nadejda L Butova ,Christopher P Caridi ,Xiao Li ,Jeff Wang ,Changfeng Deng ,David M Chenoweth ,Patrick Sung ,Maya Capelson ,Lumír Krejčí ,Irene Chiolo
Phase separation forms membraneless compartments, including heterochromatin "domains" and repair foci. Pericentromeric heterochromatin mostly comprises repeated sequences prone to aberrant recombination. In Drosophila cells, "safe" homologous recombination (HR) repair of these sequences requires their relocalization to the nuclear periphery before Rad51 recruitment and strand invasion. How this mobilization initiates is unknown, and the contribution of phase separation is unclear. Here, we show that Nup98 nucleoporin is recruited to repair sites before relocalization by Sec13 or Nup88, and downstream of the Smc5/6 complex and heterochromatin protein 1 (HP1). Remarkably, Nup98 condensates are immiscible with HP1 condensates, and they are required and sufficient to mobilize repair sites and exclude Rad51, thus preventing aberrant recombination while promoting HR repair. Disrupting this pathway results in heterochromatin repair defects and widespread chromosome rearrangements, revealing an "off-pore" role for nucleoporins and phase separation in nuclear dynamics and genome integrity in a multicellular eukaryote.

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