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6 and 8 November, 2006 Chapter 18 Gene Regulation During Development
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Overview Differences in cell type are fundamentally differences in gene expression. These expression differences are often monitored using microarray hybridization. Differential gene expression is initiated by asymmetrical mRNA distribution, cell- cell contact, or by diffusible signals. Gradients of signaling molecules can give location information to cells. Asymmetrically distributed mRNAs use the cytoskeleton for localization. Drosophila embryogenesis is a well-understood system of animal development. A morphogen gradient controls dorsal-ventral orientation in Drosophila. Asymmetrically distributed mRNAs control anterior-posterior orientation and ultimately segmentation. Segmentation also depends on the interplay of regulators at the control regions of genes. Bioinformatics tools are useful in identifying genes that are developmentally regulated.
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Signaling Differentiation
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Transducing the Signal
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Regualtion in a Morphogen Gradient
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Regulation by Asymmetrically Distributed mRNA
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Polar Cytoskeletal Elements
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Regulation by Cell-cell contact in B. subtilis
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Regulation by Cell-cell contact in Animal Development
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Morphogen Gradient
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Drosophila Development
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Spätzle-Toll create a gradient of Dorsal in nuclei.
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Transcriptional response to the Dorsal Gradient
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Snail keeps rhomboid off in cells of the mesoderm.
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Polar Distribution of bicoid and oksar in Drosophila Embryos
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Bicoid regulates orthodenticle and zygotic hunchback.
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Maternal hunchback mRNA is evenly distributed, but translationally repressed by the posteriorly concentrated nanos.
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The hunchback gradient regulates gap genes as a transcriptional repressor.
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Gap genes direct the expression of pair-rule genes.
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Bioinformatics and the identification of enhancers.
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Competition and Quecnching in the eve enhancer
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Repression of eve-3 and eve-4 enhancers by hunchback and knirps.
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Enhancer autonomy requires short-range repression.
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