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通过不同的伙伴蛋白复合物发挥白血病混合谱系白血病 1 (MLL) 融合蛋白的功能。

Function of leukemogenic mixed lineage leukemia 1 (MLL) fusion proteins through distinct partner protein complexes.

机构信息

Laboratory of Biochemistry and Molecular Biology, The Rockefeller University, New York, NY 10065, USA.

出版信息

Proc Natl Acad Sci U S A. 2011 Sep 20;108(38):15751-6. doi: 10.1073/pnas.1111498108. Epub 2011 Sep 6.

Abstract

A number of acute leukemias arise from fusion of the mixed lineage leukemia 1 protein (MLL) N terminus to a variety of fusion partners that have been reported to reside in one or more poorly defined complexes linked to transcription elongation through interactions with the histone H3-K79 methyltransferase DOT1 and positive transcription elongation factor b (P-TEFb). Here we first identify natural complexes (purified through fusion partners AF9, AF4, and ELL) with overlapping components, different elongation activities, and different cofactor associations that suggest dynamic interactions. Then, through reconstitution of defined, functionally active minimal complexes, we identify stable subcomplexes that, through newly defined protein-protein interactions, form distinct higher order complexes. These definitive analyses show, for example, that (i) through direct interactions with AF9 and cyclinT1, family members AF4 and AFF4 independently mediate association of P-TEFb with AF9, (ii) P-TEFb, through direct interactions, provides the link for association of ELL and ELL-associated factors 1 and 2 (EAF1 and EAF2) with AF4, and (iii) in the absence of other factors, DOT1 forms a stable complex with AF9 and does not interact with AF9•AF4•P-TEFb complexes. Finally, we show the importance of defined higher order complex formation in MLL-AF9-mediated transcriptional up-regulation and cell immortalization potential in vivo. Thus, our study provides direct mechanistic insight into the role of fusion partners in MLL fusion-mediated leukemogenesis.

摘要

许多急性白血病是由混合谱系白血病 1 蛋白(MLL)N 端与多种融合伙伴融合而来,这些融合伙伴已被报道存在于一个或多个定义不明确的复合物中,通过与组蛋白 H3-K79 甲基转移酶 DOT1 和正转录延伸因子 b(P-TEFb)的相互作用与转录延伸有关。在这里,我们首先通过融合伙伴 AF9、AF4 和 ELL 鉴定出具有重叠成分、不同延伸活性和不同辅助因子关联的天然复合物,这表明存在动态相互作用。然后,通过重建定义明确、功能活跃的最小复合物,我们鉴定出稳定的亚复合物,通过新定义的蛋白质-蛋白质相互作用,形成不同的高级复合物。这些明确的分析表明,例如,(i)通过与 AF9 和 cyclinT1 的直接相互作用,AF4 和 AFF4 家族成员独立介导 P-TEFb 与 AF9 的结合,(ii)P-TEFb 通过直接相互作用,为 ELL 和 ELL 相关因子 1 和 2(EAF1 和 EAF2)与 AF4 的结合提供了联系,(iii)在没有其他因子的情况下,DOT1 与 AF9 形成稳定的复合物,并且不与 AF9•AF4•P-TEFb 复合物相互作用。最后,我们表明,在 MLL-AF9 介导的转录上调和体内细胞永生化潜能中,明确的高级复合物形成的重要性。因此,我们的研究为融合伙伴在 MLL 融合介导的白血病发生中的作用提供了直接的机制见解。

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