接合作用
调节器
NEDD8公司
Notch信号通路
细胞生物学
癌症研究
生物
信号转导
泛素
遗传学
基因
泛素连接酶
作者
Kalay Bertulfo,Pablo Pérez‐Durán,Hannah I. Miller,Cindy Ma,Alberto Ambesi‐Impiombato,Jeremy B. Samon,Adam L. Mackey,Wen-Hsuan W. Lin,Adolfo A. Ferrando,Teresa Palomero
标识
DOI:10.1073/pnas.2426742122
摘要
Gamma Secretase Inhibitors (GSIs) effectively block oncogenic Notch homolog-1 (NOTCH1), a characteristic feature of T cell acute lymphoblastic leukemias (T-ALL). However, their clinical application has been stalled by the induction of severe gastrointestinal toxicity resulting from the inhibition of NOTCH signaling in the gut, which translates into increased goblet cell differentiation. Genome-wide CRISPR loss-of-function screen in the colon cancer cell line LS174T identified the neddylation pathway as a main regulator of goblet cell differentiation upon NOTCH1 inhibition. Consistently, pharmacologic inhibition of the neddylation pathway with the small molecule inhibitor MLN4924, rescued GSI-induced differentiation in LS174T cells. Mechanistically, neddylation inhibition by MLN4924 increases the protein stability of Hairy and enhancer of split-1, a direct NOTCH1 transcriptional target and key regulator of absorptive and secretory cell fate decisions. Combined treatment with GSI and MLN4924 in a murine Notch1 -dependent model of T-ALL led to leukemia regression and improved overall survival in the absence of gut toxicity. Overall, these results support the combined targeting of the NOTCH1 and neddylation pathways for the treatment of NOTCH1-induced T-ALL.
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