Billin A N, Eilers A L, Queva C, Ayer D E
Huntsman Cancer Institute at the University of Utah, Salt Lake City, Utah 84112-5550, USA.
J Biol Chem. 1999 Dec 17;274(51):36344-50. doi: 10.1074/jbc.274.51.36344.
Mad:Max heterodimers oppose the growth-promoting action of Myc:Max heterodimers by recruiting the mSin3-histone deacetylase (mSin3. HDAC) complex to DNA and functioning as potent transcriptional repressors. There are four known members of the Mad family that are indistinguishable in their abilities to interact with Max, bind DNA, repress transcription, and block Myc + Ras co-transformation. To investigate functional differences between Mad family proteins, we have identified additional proteins that interact with this family. Here we present the identification and characterization of the novel basic-helix-loop-helix zipper protein Mlx (Max-like protein x), which is structurally and functionally related to Max. The similarities between Mlx and Max include 1) broad expression in many tissues, 2) long protein half-life, and 3) formation of heterodimers with Mad family proteins that are capable of specific CACGTG binding. We show that transcriptional repression by Mad1:Mlx heterodimers is dependent on dimerization, DNA binding, and recruitment of the mSin3A.HDAC corepressor complex. In contrast with Max, Mlx interacts only with Mad1 and Mad4. Together, these findings suggest that Mlx may act to diversify Mad family function by its restricted association with a subset of the Mad family of transcriptional repressors.
Mad:Max异二聚体通过招募mSin3-组蛋白去乙酰化酶(mSin3-HDAC)复合物至DNA并作为强效转录抑制因子发挥作用,从而对抗Myc:Max异二聚体的促生长作用。Mad家族已知有四个成员,它们在与Max相互作用、结合DNA、抑制转录以及阻断Myc+Ras共转化的能力方面并无差异。为了研究Mad家族蛋白之间的功能差异,我们鉴定了与该家族相互作用的其他蛋白。在此,我们展示了新型碱性螺旋-环-螺旋拉链蛋白Mlx(Max样蛋白x)的鉴定与特性,其在结构和功能上与Max相关。Mlx与Max的相似之处包括:1)在许多组织中广泛表达;2)蛋白半衰期长;3)与能够特异性结合CACGTG的Mad家族蛋白形成异二聚体。我们发现Mad1:Mlx异二聚体的转录抑制作用依赖于二聚化、DNA结合以及mSin3A-HDAC共抑制复合物的募集。与Max不同,Mlx仅与Mad1和Mad4相互作用。这些发现共同表明,Mlx可能通过与转录抑制因子Mad家族的一个子集的有限关联来使Mad家族功能多样化。