Lim Raelene, Winteringham Louise N, Williams James H, McCulloch Ross K, Ingley Evan, Tiao Jim Y-H, Lalonde Jean-Philippe, Tsai Schickwann, Tilbrook Peta A, Sun Yi, Wu Xiaohua, Morris Stephan W, Klinken S Peter
Laboratory for Cancer Medicine, Medical Research Foundation, Royal Perth Hospital, Western Australian Institute for Medical Research, Rear 50 Murray Street, Perth, WA 6000, Australia.
J Biol Chem. 2002 Oct 25;277(43):40997-1008. doi: 10.1074/jbc.M206041200. Epub 2002 Aug 9.
A yeast two-hybrid screen was conducted to identify binding partners of Mlf1, an oncoprotein recently identified in a translocation with nucleophosmin that causes acute myeloid leukemia. Two proteins isolated in this screen were 14-3-3zeta and a novel adaptor, Madm. Mlf1 contains a classic RSXSXP sequence for 14-3-3 binding and is associated with 14-3-3zeta via this phosphorylated motif. Madm co-immunoprecipitated with Mlf1 and co-localized in the cytoplasm. In addition, Madm recruited a serine kinase, which phosphorylated both Madm and Mlf1 including the RSXSXP motif. In contrast to wild-type Mlf1, the oncogenic fusion protein nucleophosmin (NPM)-MLF1 did not bind 14-3-3zeta, had altered Madm binding, and localized exclusively in the nucleus. Ectopic expression of Madm in M1 myeloid cells suppressed cytokine-induced differentiation unlike Mlf1, which promotes maturation. Because the Mlf1 binding region of Madm and its own dimerization domain overlapped, the levels of Madm and Mlf1 may affect complex formation and regulate differentiation. In summary, this study has identified two partner proteins of Mlf1 that may influence its subcellular localization and biological function.
进行了酵母双杂交筛选,以鉴定Mlf1的结合伴侣。Mlf1是一种癌蛋白,最近在与核磷蛋白的易位中被发现,该易位导致急性髓细胞白血病。在此筛选中分离出的两种蛋白质是14-3-3ζ和一种新型衔接蛋白Madm。Mlf1含有一个用于14-3-3结合的经典RSXSXP序列,并通过这个磷酸化基序与14-3-3ζ相关联。Madm与Mlf1共免疫沉淀,并在细胞质中共定位。此外,Madm募集了一种丝氨酸激酶,该激酶使Madm和Mlf1(包括RSXSXP基序)都发生磷酸化。与野生型Mlf1不同,致癌融合蛋白核磷蛋白(NPM)-MLF1不与14-3-3ζ结合,改变了Madm结合,并且仅定位于细胞核。与促进成熟的Mlf1不同,Madm在M1髓样细胞中的异位表达抑制了细胞因子诱导的分化。由于Madm的Mlf1结合区域与其自身的二聚化结构域重叠,Madm和Mlf1的水平可能会影响复合物的形成并调节分化。总之,本研究鉴定了Mlf1的两种伴侣蛋白,它们可能影响其亚细胞定位和生物学功能。