Department of Cell Biology, The University of Alabama at Birmingham, Birmingham, Alabama, USA.
Dev Dyn. 2010 Sep;239(9):2413-25. doi: 10.1002/dvdy.22368.
Bone Morphogenetic Protein (BMP) signaling mediated by the receptor Wishful thinking (Wit) is essential for nervous system development in Drosophila. Mutants lacking wit function show defects in neuromuscular junction development and function, specification of neurosecretory phenotypes, and eclosion behavior that result in lethality. The ligand is Glass bottom boat, the Drosophila ortholog of mammalian BMP-7, which acts as a retrograde signal through the Wit receptor. In order to identify transcriptional targets of the BMP pathway in the Drosophila nervous system, we have analyzed the gene expression profile of wit mutant larval central nervous system. Genes differentially expressed identified by microarray analysis have been verified by quantitative PCR and studied by in situ hybridization. Among the genes thus identified, we find solute transporters, neuropeptides, mitochondrial proteins, and novel genes. In addition, several genes are regulated by wit in an isoform-specific manner that suggest regulation of alternative splicing by BMP signaling.
骨形态发生蛋白(BMP)信号通过受体如意思维(Wit)介导对于果蝇的神经系统发育是必不可少的。缺乏 wit 功能的突变体表现出神经肌肉接头发育和功能、神经分泌表型的特化以及羽化行为的缺陷,导致致死性。配体是玻璃底船,是果蝇中哺乳动物 BMP-7 的同源物,它作为一种逆行信号通过 Wit 受体发挥作用。为了鉴定果蝇神经系统中 BMP 途径的转录靶标,我们已经分析了 wit 突变体幼虫中枢神经系统的基因表达谱。通过微阵列分析鉴定的差异表达基因已通过定量 PCR 验证,并通过原位杂交进行了研究。在这些鉴定的基因中,我们发现了溶质转运体、神经肽、线粒体蛋白和新基因。此外,一些基因以 Wit 特异性的方式调节,这表明 BMP 信号对选择性剪接的调节。