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首页> 外文期刊>American Journal of Cancer Research >Disruption of the menin-MLL interaction triggers menin protein degradation via ubiquitin-proteasome pathway
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Disruption of the menin-MLL interaction triggers menin protein degradation via ubiquitin-proteasome pathway

机译:Menin-MLL相互作用的破坏触发Menin蛋白质通过泛素 - 蛋白酶体途径降解

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摘要

Menin, a protein encoded by the MEN1 gene, suppresses cancers associated with multiple endocrine neoplasia type 1 (MEN1), but promotes the development of a subset of leukemia induced by mixed lineage leukemia (MLL)-derived fusion proteins (MLL-FPs). The crystal structure of menin indicates that it acts as a scaffold protein to bind the N-terminus of MLL via a central pocket. Small molecule menin-MLL inhibitors (MIs) bind the menin pocket to disrupt the menin/MLL interaction, resulting in suppression of MLL-FP-transformed acute myeoloid leukemia (AML). It is thought that MIs suppress the MLL-FP-induced leukemia by blocking the menin/MLL interaction and menin/MLL-induced HOX gene transcription. However, it is not clear whether MIs also affect other aspects of menin biology beyond disruption of the menin/MLL interaction. Here we show for the first time that MIs reduced menin protein levels and decreased the half-life of menin protein but have no effect on mRNA level in MLL-FP-expressing leukemia cells, and proteasome or E1 ligase inhibitor rescued the MI-induced menin degradation. Notably, the MI-induced reduction of H3K4m3 and HOXA9 expression was rescued with a proteasome inhibitor that blocks MI-induced menin protein degradation. Mechanistically, MIs promote the interaction of menin with Hsp70-associated ubiquitin ligase CHIP, resulting in increased menin ubiquitination, leading to increased menin degradation. Together, these findings uncover a novel mechanism whereby small molecule MIs increase menin degradation by triggering the Hsp70/CHIP-mediated ubiquitin-proteasome pathway that ultimately leads to the reduction in HOXA9 gene expression and leukemia suppression.
机译:Menin,由MEN1基因编码的蛋白质,抑制与多个内分泌瘤形成1型(MEN1)相关的癌症,但促进了由混合谱系白血病(MLL)的融合蛋白(MLL-FPS)诱导的白血病诱导的癌症的发展。 Menin的晶体结构表明它用作支架蛋白,通过中央口袋将MLL的N-末端结合。小分子menin-ml-mll抑制剂(mis)染色menin口袋以破坏menin / mll相互作用,导致抑制mll-fp转化的急性霉菌白血病(AML)。据认为,通过阻断menin / mll相互作用和menin / mll诱导的hox基因转录来抑制MLS-FP诱导的白血病。然而,目前尚不清楚MIS是否也影响Menin生物学的其他方面,超出了Menin / MLL互动的破坏。在这里,我们首次展示了MES减少了Menin蛋白水平并降低了Menin蛋白的半衰期,但对表达MLL-FP表达的白血病细胞没有对mRNA水平的影响,并且蛋白酶体或E1连接酶抑制剂救出了MI诱导的Menin降解。值得注意的是,用蛋白酶体抑制剂拯救了MI诱导的H3K4M3和HOXA9表达的降低,该蛋白酶体抑制剂阻断MI诱导的MIN诱导的Menin蛋白质降解。机械地,MIS促进Menin与HSP70相关的泛素连接酶芯片酶的相互作用,导致Menin泛素增加增加,导致Menin降解增加。这些发现在一起发现了一种新的机制,通过触发HSP70 /芯片介导的泛素蛋白酶态途径来增加menin降解,最终导致Hoxa9基因表达和白血病抑制的降低。

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