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cis-regulatory sequences responsible for alternative splicing of the Drosophila dopa decarboxylase gene.

机译:顺式调控序列负责果蝇多巴脱羧酶基因的选择性剪接。

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The Drosophila dopa decarboxylase gene, Ddc, is expressed in the hypoderm and in specific sets of cells in the central nervous system (CNS). The unique Ddc primary transcript is alternatively spliced in these two tissues. The Ddc CNS mRNA contains all four exons (A through D), whereas the hypodermal mRNA contains only three exons (A, C, and D). To localize cis-regulatory sequences responsible for Ddc alternative splicing, a Ddc minigene and several fusion genes containing various amounts of Ddc sequences fused to fushi tarazu (ftz) exon 1 were constructed and introduced into flies by P-element-mediated germ line transformation. We find that Ddc intron ab and exon B are sufficient to regulate Ddc alternative splicing, since transcripts of a minimal fusion gene containing most of Ddc intron ab and exon B are spliced to exon B in the CNS but not in the hypoderm. These results indicate that Ddc alternative splicing is regulated by either a negative mechanism preventing splicing to exon B in the hypoderm or a positive mechanism activating splicing to exon B in the CNS. Our previous data suggest that Ddc hypodermal splicing is the actively regulated splicing pathway (J. Shen, C. J. Beall, and J. Hirsh, Mol. Cell. Biol. 13:4549-4555, 1993). Here we show that deletion of Ddc intron ab sequences selectively disrupts hypodermal splicing specificity. These results support a model in which Ddc alternative splicing is negatively regulated by a blockage mechanism preventing splicing to exon B in the hypoderm.
机译:果蝇多巴脱羧酶基因Ddc在皮下组织和中枢神经系统(CNS)的特定细胞组中表达。独特的Ddc主转录本可选择性地剪接在这两个组织中。 Ddc CNS mRNA包含所有四个外显子(A到D),而皮下mRNA仅包含三个外显子(A,C和D)。为了定位负责Ddc选择性剪接的顺式调控序列,构建了一个Ddc小基因和几个融合基因,其中包含与fushi tarazu(ftz)外显子1融合的各种Ddc序列,并通过P元素介导的种系转化引入果蝇。我们发现,Ddc内含子ab和外显子B足以调节Ddc选择性剪接,因为包含大多数Ddc内含子ab和外显子B的最小融合基因的转录本在CNS中被剪接到外显子B,但在皮下却没有。这些结果表明,Ddc选择性剪接受防止皮下组织中与外显子B剪接的负性机制或激活中枢神经系统中与外显子B剪接的正性机制的调控。我们以前的数据表明,Ddc皮下接合是主动调节的接合途径(J.Shen,C.J.Beall和J.Hirsh,Mol.Cell.Biol.13:4549-4555,1993)。在这里,我们显示Ddc内含子ab序列的删除选择性地破坏了皮下剪接的特异性。这些结果支持了一个模型,其中Ddc替代剪接受阻止在皮下组织中与外显子B剪接的阻断机制负调控。

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