Tekotte Hildegard, Berdnik Daniela, Török Tibor, Buszczak Michael, Jones Lynn M, Cooley Lynn, Knoblich Jürgen A, Davis Ilan
Wellcome Trust Centre for Cell Biology, ICMB, King's Buildings, University of Edinburgh, Edinburgh, Scotland, EH9 3JR, UK.
Dev Biol. 2002 Apr 15;244(2):396-406. doi: 10.1006/dbio.2002.0612.
We have studied the in vivo function and tissue specificity of Dcas, the Drosophila ortholog of CAS, the importin beta-like export receptor for importin alpha. While dcas mRNA is specifically expressed in the embryonic central nervous system, Dcas protein is maternally supplied to all embryonic cells and its nuclear/cytoplasmic distribution varies in different tissues and times in development. Unexpectedly, hypomorphic alleles of dcas show specific transformations in mechano-sensory organ cell identity, characteristic of mutations that increase Notch signaling. Dcas is essential for efficient importin-alpha3 nuclear export in mechano-sensory cells and the surrounding epidermal cells and is indirectly required for the import of one component of the Notch pathway, but not others tested. We interpret the specificity of the dcas phenotype as indicating that one or more Notch signaling components are particularly sensitive to a disruption in nuclear protein import. We propose that mutations in house keeping genes often cause specific developmental phenotypes, such as those observed in many human genetic disorders.
我们研究了Dcas(CAS在果蝇中的直系同源物,一种与输入蛋白α类似的输出受体)的体内功能和组织特异性。虽然dcas mRNA在胚胎中枢神经系统中特异性表达,但Dcas蛋白是由母体提供给所有胚胎细胞的,并且其在细胞核/细胞质中的分布在发育过程中的不同组织和时间有所变化。出乎意料的是,dcas的亚等位基因在机械感觉器官细胞身份上表现出特定的转变,这是增加Notch信号的突变所特有的特征。Dcas对于机械感觉细胞和周围表皮细胞中输入蛋白α3的有效核输出至关重要,并且间接参与Notch信号通路一个成分的输入,但不参与所测试的其他成分的输入。我们将dcas表型的特异性解释为表明一个或多个Notch信号成分对核蛋白输入的破坏特别敏感。我们提出,管家基因中的突变通常会导致特定的发育表型,就像在许多人类遗传疾病中观察到的那样。