Fujiwara Yoshihiro, Shindome Chiyomi, Takeda Makio, Shiomi Kunihiro
Faculty of Textile Science and Technology, Department of Applied Biology, Shinshu University, Ueda, Nagano 386-8567, Japan.
Insect Biochem Mol Biol. 2006 Jan;36(1):47-53. doi: 10.1016/j.ibmb.2005.10.005. Epub 2005 Nov 9.
To clarify the molecular mechanisms of Bombyx diapause, we focused on mitogen-activated protein kinases (MAPK), which are the major components of signal transduction cascades that regulate cell proliferation, differentiation, and stress responses. In the present study, cloning of Bombyx extracellular signal-related kinase (ERK), MAPK-ERK kinase (MEK), and p38 MAPK cDNA, revealed that their amino acid sequences have close similarity with those of other species. We analyzed the roles of the kinases in diapause initiation and termination by immuno-blotting with anti-phospho-kinase antibodies. Phospho-MEK levels remained consistently high in non-diapausing eggs, then declined after the diapausing stage in diapausing eggs, and began to increase 45 d after transfer to 5 degrees C upon diapause termination. The phospho-ERK and phospho-MEK profiles were similar, suggesting that ERK phosphorylation is regulated by MEK. The phospho-p38 MAPK levels declined 36 h after oviposition in diapausing eggs, and increased at 15-30 d at 5 degrees C in yolk cells, suggesting that p38 MAPK has a role in diapause initiation and termination. Phospho-ERK levels were maintained with diapause-interrupting treatment and declined with diapause-sustaining treatment. ERK phosphorylation is considered to have a role in diapause termination and in the resumption of development.
为阐明家蚕滞育的分子机制,我们聚焦于丝裂原活化蛋白激酶(MAPK),其是调节细胞增殖、分化及应激反应的信号转导级联反应的主要组成部分。在本研究中,家蚕细胞外信号调节激酶(ERK)、MAPK-ERK激酶(MEK)和p38 MAPK cDNA的克隆显示,它们的氨基酸序列与其他物种的氨基酸序列具有高度相似性。我们通过用抗磷酸化激酶抗体进行免疫印迹分析了这些激酶在滞育起始和终止中的作用。在非滞育卵中,磷酸化MEK水平一直保持较高,然后在滞育卵的滞育阶段后下降,并在滞育终止后转移至5℃ 45天后开始升高。磷酸化ERK和磷酸化MEK的变化趋势相似,表明ERK磷酸化受MEK调节。在滞育卵中,产卵后36小时磷酸化p38 MAPK水平下降,并在5℃下15 - 30天时在卵黄细胞中升高,表明p38 MAPK在滞育起始和终止中发挥作用。用滞育中断处理可维持磷酸化ERK水平,而用滞育维持处理则使其下降。ERK磷酸化被认为在滞育终止和发育恢复中起作用。