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Cloning and characterization ofkuzbanian, a gene required for neural development in the fruit fly Drosophila melanogaster.

机译:库兹班人(果蝇果蝇神经发育所需的基因)的克隆和鉴定。

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摘要

Lateral inhibition is a process commonly employed in the development of higher organisms for the specification of multiple cell types from initially equivalent populations of cells. Many molecular components of the lateral inhibition machinery have been identified in the developing nervous system of Drosophila melanogaster, where signaling through the Notch-Delta pathway governs the selection of single neural precursors from cell equivalence groups known as proneural clusters. However, the mechanism by which lateral inhibition ensures the selection of a single neural precursor is not well understood, and additional essential components of the inhibitory machinery must be isolated and characterized before the process can be fully elucidated.;Using the FLP/FRT system to generate mosaic flies, a novel gene was identified whose multiple sensory bristle phenotype in mutant clones indicated that it is an essential component of the inhibitory signaling that governs the selection of single neural precursors in Drosophila. Flies carrying clones mutant for this gene, called kuzbanian (kuz), exhibited bristle, eye, and wing phenotypes consistent with a requirement for kuz in lateral inhibition. Furthermore, kuz null embryos exhibited extensive neural hyperplasia of the central nervous system, a hallmark of genes of the neurogenic class such as Notch, Delta and shaggy/zw3.;Characterization of the kuz multiple bristle phenotype in mosaic flies revealed that kuz is required in cells with neural potential for them to receive a signal inhibiting the neural fate. These analyses also demonstrated that kuz is necessary for sending a positive signal promoting the neural fate, indicating a dual role for kuz in the specification of the neural cell fate. In addition, the large number of bristles produced in kuz mutant clones suggested that inhibition of a cell's neural potential does not depend upon its direct contact with an emerging neural precursor, a departure from the currently-accepted model of lateral inhibition.;The kuz gene was cloned and its genomic region characterized, revealing multiple alternatively-spliced kuz transcripts. Nucleotide sequence of kuz cDNAs demonstrated that the kuz gene encodes a protein containing metalloprotease and disintegrin domains, and represents a novel member of the ADAM family of proteins.
机译:横向抑制是在高等生物的发展中通常采用的过程,用于从最初相等的细胞群中鉴定多种细胞类型。在果蝇的发育中的神经系统中已经发现了侧向抑制机制的许多分子成分,其中通过Notch-Delta途径的信号控制着从称为细胞前体簇的细胞等效基团中选择单个神经前体。但是,人们对如何通过横向抑制来确保选择单个神经前体的机制尚不十分了解,在完全阐明该过程之前,必须对抑制机制的其他基本成分进行分离和表征。产生花粉蝇,鉴定了一个新基因,该基因在突变体克隆中具有多种感觉刚毛表型,表明它是抑制果蝇中单个神经前体选择的抑制信号的重要组成部分。携带这种基因突变体(称为kuzbanian(kuz))的苍蝇表现出的鬃毛,眼和翼表型与侧向抑制中对kuz的要求一致。此外,库兹空胚表现出中枢神经系统的广泛神经增生,这是神经源性类的基因的标志,例如Notch,Delta和shaggy / zw3 .;镶嵌蝇中库兹多鬃毛表型的特征表明在库兹蝇中需要库兹具有神经潜能的细胞会接受抑制神经命运的信号。这些分析还表明,库兹语对于发送促进神经命运的正信号是必需的,这表明库兹语在神经细胞命运规范中具有双重作用。此外,在kuz突变体克隆中产生的大量刷毛表明,抑制细胞的神经潜能并不取决于其与新兴神经前体的直接接触,这与目前公认的横向抑制模型背道而驰。克隆并鉴定其基因组区域,揭示了多个交替剪接的kuz转录物。 kuz cDNA的核苷酸序列表明,kuz基因编码包含金属蛋白酶和解整合蛋白结构域的蛋白质,并且代表ADAM蛋白质家族的一个新成员。

著录项

  • 作者

    Rooke, Jenny Ellen.;

  • 作者单位

    Yale University.;

  • 授予单位 Yale University.;
  • 学科 Genetics.;Molecular biology.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 166 p.
  • 总页数 166
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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