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Journal ArticleDOI

Exploring the Metabolic and Genetic Control of Gene Expression on a Genomic Scale

Joseph L. DeRisi, +2 more
- 24 Oct 1997 - 
- Vol. 278, Iss: 5338, pp 680-686
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TLDR
DNA microarrays containing virtually every gene of Saccharomyces cerevisiae were used to carry out a comprehensive investigation of the temporal program of gene expression accompanying the metabolic shift from fermentation to respiration, and the expression patterns of many previously uncharacterized genes provided clues to their possible functions.
Abstract
DNA microarrays containing virtually every gene of Saccharomyces cerevisiae were used to carry out a comprehensive investigation of the temporal program of gene expression accompanying the metabolic shift from fermentation to respiration. The expression profiles observed for genes with known metabolic functions pointed to features of the metabolic reprogramming that occur during the diauxic shift, and the expression patterns of many previously uncharacterized genes provided clues to their possible functions. The same DNA microarrays were also used to identify genes whose expression was affected by deletion of the transcriptional co-repressor TUP1 or overexpression of the transcriptional activator YAP1. These results demonstrate the feasibility and utility of this approach to genomewide exploration of gene expression patterns.

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Method for the Evolutionary Design of Biochemical Reaction Networks

TL;DR: In this paper, the authors present methods for achieving an optimal function of a biochemical reaction network, which can be performed in silico using a reconstruction of a biological reaction network of a cell and iterative optimization procedures.
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The genetics of fatty acid metabolism in Saccharomyces cerevisiae

TL;DR: The yeast Saccharomyces cerevisiae is a valuable model system for elucidation of gene-function relationships in such eukaryotic processes as fatty acid metabolism, and recent genes encoding core and auxiliary enzymes of peroxisomal beta-oxidation have been identified.
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Identification of transforming growth factor-β- regulated genes in Caenorhabditis elegans by differential hybridization of arrayed cDNAs

TL;DR: In situ hybridization analysis revealed the spatial and temporal expression patterns of each clone and showed that at least four genes, including the gene for the type I receptor for Dbl-1, sma-6, were transcriptionally regulated by the DBL-1 signal.
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MADS: A new and improved method for analysis of differential alternative splicing by exon-tiling microarrays

TL;DR: The exon-tiling microarray design is an efficient and powerful approach for global, unbiased analysis of pre-mRNA splicing and numerous novel PTB-dependent splicing events are identified.
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Quantitative comparison of cDNA-AFLP, microarrays, and GeneChip expression data in Saccharomyces cerevisiae.

TL;DR: It is shown that cDNA-AFLP is a very good alternative to microarrays and since no preexisting biological or sequence information is required, it is applicable to any species.
References
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Journal ArticleDOI

Quantitative monitoring of gene expression patterns with a complementary DNA microarray.

TL;DR: A high-capacity system was developed to monitor the expression of many genes in parallel by means of simultaneous, two-color fluorescence hybridization, which enabled detection of rare transcripts in probe mixtures derived from 2 micrograms of total cellular messenger RNA.
PatentDOI

Expression monitoring by hybridization to high density oligonucleotide arrays

TL;DR: In this article, the authors proposed a method for monitoring the expression levels of a multiplicity of genes by hybridizing a nucleic acid sample to a high density array of oligonucleotide probes and quantifying the hybridized nucleic acids in the array.
Journal ArticleDOI

Use of a cDNA microarray to analyse gene expression patterns in human cancer.

TL;DR: Previously unrecognized alterations in the expression of specific genes provide leads for further investigation of the genetic basis of the tumorigenic phenotype of these cells.
Journal ArticleDOI

Accessing Genetic Information with High-Density DNA Arrays

TL;DR: The simultaneous analysis of the entire human mitochondrial genome is described here and can be used to address a variety of questions in molecular genetics including gene expression, genetic linkage, and genetic variability.
Journal ArticleDOI

A DNA microarray system for analyzing complex DNA samples using two-color fluorescent probe hybridization.

TL;DR: This work describes a general experimental approach, using microscopic arrays of DNA fragments on glass substrates for differential hybridization analysis of fluorescently labeled DNA samples, and demonstrates the utility of DNA microarrays in the analysis of complex DNA samples.
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