Petronilho Elaine C, de Andrade Guilherme C, de Sousa Gileno Dos S, Almeida Fernando P, Mota Michelle F, Gomes Ana Vitória Dos S, Pinheiro Carlos Henrique S, da Silva Mylena C, Arruda Hiam R S, Marques Mayra A, Vieira Tuane C R G, de Oliveira Guilherme A P, Silva Jerson L
Institute of Medical Biochemistry Leopoldo de Meis, National Institute of Science and Technology for Structural Biology and Bioimaging, National Center of Nuclear Magnetic Resonance Jiri Jonas, Federal University of Rio de Janeiro, Rio de Janeiro, RJ, Brazil.
National Center for Structural Biology and Bioimaging (CENABIO), Federal University of Rio de Janeiro, Rio de Janeiro, RJ, Brazil.
Commun Chem. 2024 Sep 16;7(1):207. doi: 10.1038/s42004-024-01289-x.
P53 Phase separation is crucial towards amyloid aggregation and p63 and p73 have enhanced expression in tumors. This study examines the phase behaviors of p53, p63, and p73. Here we show that unlike the DNA-binding domain of p53 (p53C), the p63C and p73C undergo phase separation, but do not form amyloids under physiological temperatures. Wild-type and mutant p53C form droplets at 4°C and aggregates at 37 °C with amyloid properties. Mutant p53C promotes amyloid-like states in p63C and p73C, recruiting them into membraneless organelles. Amyloid conversion is supported by thioflavin T and Congo red binding, increased light scattering, and circular dichroism. Full-length mutant p53 and p63C (or p73C) co-transfection shows reduced fluorescence recovery after photobleaching. Heparin inhibits the prion-like aggregation of p63C and p73C induced by p53C. These findings highlight the role of p53 in initiating amyloid aggregation in p63 and p73, opening avenues for targeting prion-like conversion in cancer therapy.
p53相分离对淀粉样蛋白聚集至关重要,且p63和p73在肿瘤中表达增强。本研究考察了p53、p63和p73的相行为。我们在此表明,与p53的DNA结合结构域(p53C)不同,p63C和p73C会发生相分离,但在生理温度下不会形成淀粉样蛋白。野生型和突变型p53C在4°C时形成液滴,在37°C时形成具有淀粉样蛋白性质的聚集体。突变型p53C促进p63C和p73C中的淀粉样样状态,将它们募集到无膜细胞器中。硫黄素T和刚果红结合、光散射增加以及圆二色性支持淀粉样转化。全长突变型p53与p63C(或p73C)共转染显示光漂白后荧光恢复降低。肝素抑制p53C诱导的p63C和p73C的朊病毒样聚集。这些发现突出了p53在引发p63和p73中淀粉样蛋白聚集方面的作用,为癌症治疗中靶向朊病毒样转化开辟了途径。