RNA interference microarrays: High-throughput loss-of-function genetics in mammalian cells
被引:116
作者:
Silva, JM
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Cold Spring Harbor Lab, Watson Sch Biol Sci, Cold Spring Harbor, NY 11724 USACold Spring Harbor Lab, Watson Sch Biol Sci, Cold Spring Harbor, NY 11724 USA
Silva, JM
[1
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Mizuno, H
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Cold Spring Harbor Lab, Watson Sch Biol Sci, Cold Spring Harbor, NY 11724 USACold Spring Harbor Lab, Watson Sch Biol Sci, Cold Spring Harbor, NY 11724 USA
Mizuno, H
[1
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Brady, A
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Cold Spring Harbor Lab, Watson Sch Biol Sci, Cold Spring Harbor, NY 11724 USACold Spring Harbor Lab, Watson Sch Biol Sci, Cold Spring Harbor, NY 11724 USA
Brady, A
[1
]
Lucito, R
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Cold Spring Harbor Lab, Watson Sch Biol Sci, Cold Spring Harbor, NY 11724 USACold Spring Harbor Lab, Watson Sch Biol Sci, Cold Spring Harbor, NY 11724 USA
Lucito, R
[1
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Hannon, GJ
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Cold Spring Harbor Lab, Watson Sch Biol Sci, Cold Spring Harbor, NY 11724 USACold Spring Harbor Lab, Watson Sch Biol Sci, Cold Spring Harbor, NY 11724 USA
Hannon, GJ
[1
]
机构:
[1] Cold Spring Harbor Lab, Watson Sch Biol Sci, Cold Spring Harbor, NY 11724 USA
RNA interference (RNAi) is a biological process in which a double-stranded RNA directs the silencing of target genes in a sequence-specific manner. Exogenously delivered or endogenously encoded double-stranded RNAs can enter the RNAi pathway and guide the suppression of transgenes and cellular genes. This technique has emerged as a powerful tool for reverse genetic studies aimed toward the elucidation of gene function in numerous biological models. Two approaches, the use of small interfering RNAs and short hairpin RNAs (shRNAs), have been developed to permit the application of RNAi technology in mammalian cells. Here we describe the use of a shRNA-based live-cell microarray that allows simple, low-cost, high-throughput screening of phenotypes caused by the silencing of specific endogenous genes. This approach is a variation of "reverse transfection" in which mammalian cells are cultured on a microarray slide spotted with different shRNAs in a transfection carrier. Individual cell clusters become transfected with a defined shRNA that directs the inhibition of a particular gene of interest, potentially producing a specific phenotype. We have validated this approach by targeting genes involved in cytokinesis and proteasome-mediated proteolysis.
机构:
Univ Calif San Francisco, HHMI, Dept Cellular & Mol Pharmacol, San Francisco, CA 94107 USAUniv Calif San Francisco, HHMI, Dept Cellular & Mol Pharmacol, San Francisco, CA 94107 USA
Goshima, G
;
Vale, RD
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机构:
Univ Calif San Francisco, HHMI, Dept Cellular & Mol Pharmacol, San Francisco, CA 94107 USAUniv Calif San Francisco, HHMI, Dept Cellular & Mol Pharmacol, San Francisco, CA 94107 USA
机构:
Univ Calif San Francisco, HHMI, Dept Cellular & Mol Pharmacol, San Francisco, CA 94107 USAUniv Calif San Francisco, HHMI, Dept Cellular & Mol Pharmacol, San Francisco, CA 94107 USA
Goshima, G
;
Vale, RD
论文数: 0引用数: 0
h-index: 0
机构:
Univ Calif San Francisco, HHMI, Dept Cellular & Mol Pharmacol, San Francisco, CA 94107 USAUniv Calif San Francisco, HHMI, Dept Cellular & Mol Pharmacol, San Francisco, CA 94107 USA