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Proteolytic Cleavage of MLL Generates a Complex of N- and C-Terminal Fragments That Confers Protein Stability and Subnuclear Localization

机译:MLL的蛋白水解切割产生复杂的N和C末端片段,赋予蛋白质稳定性和亚核定位

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The mixed-lineage leukemia gene (MLL, ALL1, HRX) encodes a 3,969-amino-acid nuclear protein homologous to Drosophila trithorax and is required to maintain proper Hox gene expression. Chromosome translocations in human leukemia disrupt MLL (11q23), generating chimeric proteins between the N terminus of MLL and multiple translocation partners. Here we report that MLL is normally cleaved at two conserved sites (D/GADD and D/GVDD) and that mutation of these sites abolishes the proteolysis. MLL cleavage generates N-terminal p320 (N320) and C-terminal p180 (C180) fragments, which form a stable complex that localizes to a subnuclear compartment. The FYRN domain of N320 directly interacts with the FYRC and SET domains of C180. Disrupting the interaction between N320 and C180 leads to a marked decrease in the level of N320 and a redistribution of C180 to a diffuse nuclear pattern. These data suggest a model in which a dynamic post-cleavage association confers stability to N320 and correct nuclear sublocalization of the complex, to control the availability of N320 for target genes. This predicts that MLL fusion proteins of leukemia which would lose the ability to complex with C180 have their stability conferred instead by the fusion partners, thus providing one mechanism for altered target gene expression.
机译:混合谱系白血病基因( MLL ALL1 HRX )编码与果蝇同源的3,969个氨基酸的核蛋白/ em>胸腔,是维持正确的 Hox 基因表达所必需的。人类白血病中的染色体易位破坏 MLL (11q23),在MLL的N端和多个易位伴侣之间产生嵌合蛋白。在这里我们报告说,MLL通常在两个保守位点(D / GADD和D / GVDD)切割,这些位点的突变消除了蛋白水解作用。 MLL裂解产生N末端p320(N320)和C末端p180(C180)片段,它们形成稳定的复合物,该复合物定位于亚核区室。 N320的FYRN域与C180的FYRC和SET域直接交互。破坏N320和C180之间的相互作用会导致N320水平显着下降,并使C180重新分布为扩散核模式。这些数据提出了一个模型,其中动态的切割后缔合赋予N320稳定性并纠正复合物的核亚定位,以控制N320可用于靶基因。这预测白血病的MLL融合蛋白将失去与C180复合的能力,而是由融合伴侣赋予其稳定性,从而提供了改变靶基因表达的一种机制。

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