Department of Systems Biology, University of Texas M. D. Anderson Cancer Center, Houston, Texas, USA.
PLoS One. 2010 May 25;5(5):e10713. doi: 10.1371/journal.pone.0010713.
The zinc finger protein CF2 is a characterized activator of muscle structural genes in the body wall muscles of the Drosophila larva. To investigate the function of CF2 in the indirect flight muscle (IFM), we examined the phenotypes of flies bearing five homozygous viable mutations. The gross structure of the IFM was not affected, but the stronger hypomorphic alleles caused an increase of up to 1.5X in the diameter of the myofibrils. This size increase did not cause any disruption of the hexameric arrangement of thick and thin filaments. RT-PCR analysis revealed an increase in the transcription of several structural genes. Ectopic overexpression of CF2 in the developing IFM disrupts muscle formation. While our results indicate a role for CF2 as a direct negative regulator of the thin filament protein gene Actin 88F (Act88F), effects on levels of transcripts of myosin heavy chain (mhc) appear to be indirect. This role is in direct contrast to that described in the larval muscles, where CF2 activates structural gene expression. The variation in myofibril phenotypes of CF2 mutants suggest the CF2 may have separate functions in fine-tuning expression of structural genes to insure proper filament stoichiometry, and monitoring and/or controlling the final myofibril size.
锌指蛋白 CF2 是果蝇幼虫体壁肌肉中肌肉结构基因的特征激活子。为了研究 CF2 在间接飞行肌(IFM)中的功能,我们检查了携带五个纯合有效突变的果蝇的表型。IFM 的大体结构不受影响,但更强的亚效等位基因导致肌原纤维直径增加高达 1.5 倍。这种尺寸的增加不会破坏厚和薄丝的六聚体排列。RT-PCR 分析显示几个结构基因的转录增加。CF2 在发育中的 IFM 中的异位过表达会破坏肌肉形成。虽然我们的结果表明 CF2 作为细丝蛋白基因 Actin 88F(Act88F)的直接负调节剂的作用,但对肌球蛋白重链(mhc)转录物水平的影响似乎是间接的。这一作用与在幼虫肌肉中描述的作用形成直接对比,在幼虫肌肉中,CF2 激活结构基因的表达。CF2 突变体肌原纤维表型的变化表明,CF2 可能具有单独的功能,以微调结构基因的表达,以确保适当的细丝化学计量,并监测和/或控制最终的肌原纤维大小。