Huang W, Kessler D S, Erikson R L
Department of Molecular and Cellular Biology, Harvard University, Cambridge, Massachusetts 02138, USA.
Mol Biol Cell. 1995 Mar;6(3):237-45. doi: 10.1091/mbc.6.3.237.
Recently, we described the constitutive activation of Mek1 by mutation of its two serine phosphorylation sites. We have now characterized the biochemical properties of these Mek1 mutants and performed microinjection experiments to investigate the effect of an activated Mek on oocyte maturation. Single acidic substitution of either serine 218 or 222 activated Mek1 by 10-50 fold. The double acidic substitutions, [Asp218, Asp222] and [Asp218, Glu222], activated Mek1 over 6000-fold. The specific activity of the [Asp218, Asp222] and [Asp218, Glu222] Mek1 mutants, 29 nanomole phosphate per minute per milligram, is similar to that of wild-type Mek1 activated by Raf-1 in vitro. Although the mutants with double acidic substitutions could not be further activated by Raf-1, three of those with single acidic substitution were activated by Raf-1 to the specific activity of activated wild-type Mek1. Injection of the [Asp218, Asp222] Mek1 mutant into Xenopus oocytes activated both MAP kinase and histone H1 kinase and induced germinal vesicle breakdown, an effect that was only partially blocked by inhibition of protein synthesis. These data provide a measure of Mek's potential to influence cell functions and a quantitative basis to assess the biological effects of Mek1 mutants in a variety of circumstances.
最近,我们报道了通过突变其两个丝氨酸磷酸化位点实现的Mek1组成型激活。我们现在已经对这些Mek1突变体的生化特性进行了表征,并进行了显微注射实验,以研究激活的Mek对卵母细胞成熟的影响。丝氨酸218或222的单酸性取代使Mek1的活性提高了10至50倍。双酸性取代[Asp218,Asp222]和[Asp218,Glu222]使Mek1的活性提高了6000倍以上。[Asp218,Asp222]和[Asp218,Glu222] Mek1突变体的比活性为每分钟每毫克29纳摩尔磷酸盐,与体外被Raf-1激活的野生型Mek1相似。虽然双酸性取代的突变体不能被Raf-1进一步激活,但其中三个单酸性取代的突变体被Raf-1激活至野生型Mek1激活后的比活性。将[Asp218,Asp222] Mek1突变体注射到非洲爪蟾卵母细胞中,激活了丝裂原活化蛋白激酶(MAP激酶)和组蛋白H1激酶,并诱导了生发泡破裂,这种效应仅部分被蛋白质合成抑制所阻断。这些数据提供了衡量Mek影响细胞功能潜力的指标,以及在各种情况下评估Mek1突变体生物学效应的定量基础。