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A bivalent inhibitor against TDRD3 to suppress phase separation of methylated G3BP1.

Wei-Wei FanTian XuJia GaoHan-Yu ZhangYan LiDuo-Duo HuShuaixin GaoJia-Hai ZhangXing LiuDan LiuPi-Long LiCatherine C L WongXue-Biao YaoYun-Yu ShiZhen-Ye YangXi-Sheng WangKe Ruan
Published in: Chemical communications (Cambridge, England) (2024)
The formation of membrane-less organelles is driven by multivalent weak interactions while mediation of such interactions by small molecules remains an unparalleled challenge. Here, we uncovered a bivalent inhibitor that blocked the recruitment of TDRD3 by the two methylated arginines of G3BP1. Relative to the monovalent inhibitor, this bivalent inhibitor demonstrated an enhanced binding affinity to TDRD3 and capability to suppress the phase separation of methylated G3BP1, TDRD3, and RNAs, and in turn inhibit the stress granule growth in cells. Our result paves a new path to mediate multivalent interactions involved in SG assembly for potential combinational chemotherapy by bivalent inhibitors.
Keyphrases
  • induced apoptosis
  • oxidative stress
  • squamous cell carcinoma
  • depressive symptoms
  • social support
  • rectal cancer
  • stress induced
  • living cells
  • human health
  • dna binding