Molecular Biology Unit, Adolf Butenandt Institute and Center for Integrated Protein Science, Ludwig Maximilians University, 80336 Munich, Germany.
Mol Cell. 2012 Nov 30;48(4):647-54. doi: 10.1016/j.molcel.2012.09.012. Epub 2012 Oct 18.
The process of dosage compensation (DC) in Drosophila counterbalances the monosomy of the X chromosome in male flies by increasing the transcription from this unique chromosome in the two-fold range. Upon exclusive expression of male-specific lethal 2 (MSL2) in males, the dosage compensation machinery assembles on active X-chromosomal genes. Overexpression of MSL proteins leads to aberrant binding of complex components to autosomes. Accordingly, MSL levels have to be carefully regulated. Here we describe a new mechanism through which MSL2 can fulfill its role as the central regulator of the faithful biogenesis and functionality of the DC machinery. MSL2 is an E3 ligase that ubiquitylates itself and the other associated components when their stoichiometry is unbalanced, uncovering proteasome-dependent degradation as an additional layer of homeostatic control of MSL levels. Furthermore, systematic mapping of modification sites by mass spectrometry and chromatin interaction studies on the target protein MSL1 suggest that the role of MSL2-mediated ubiquitylation goes beyond proteolysis.
在果蝇中,剂量补偿(DC)过程通过将这条独特的 X 染色体的转录增加一倍来平衡雄性果蝇中 X 染色体的单体性。当雄性特异性致死 2(MSL2)仅在雄性中表达时,剂量补偿机制就会在活性 X 染色体基因上组装。MSL 蛋白的过表达会导致复合物成分异常结合到常染色体上。因此,MSL 水平必须被仔细调节。在这里,我们描述了一种新的机制,通过该机制,MSL2 可以作为 DC 机制忠实生物发生和功能的中央调节剂发挥作用。MSL2 是一种 E3 连接酶,当它的化学计量失衡时,它会自我泛素化以及其他相关成分,揭示蛋白酶体依赖性降解是 MSL 水平的另一种稳态控制的附加层。此外,通过质谱法对修饰位点进行系统作图和对靶蛋白 MSL1 的染色质相互作用研究表明,MSL2 介导的泛素化作用超出了蛋白水解作用。