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Gene Expression

Postinduction Turnoff of Beta-Interferon Gene Expression

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Pages 1329-1337 | Received 20 Sep 1989, Accepted 15 Dec 1989, Published online: 31 Mar 2023

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Maryam Kay, Zohreh Hojati, Maryam Heidari, Zahra Bazi & Hassan Korbekandi. (2015) Effects of disruption of the nucleotide pattern in CRID element and Kozak sequence of interferon β on mRNA stability and protein production. Autoimmunity 48:5, pages 336-343.
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J. Eric Russell, Julia Morales, Aleksandr V. Makeyev & Stephen A. Liebhaber. (1998) Sequence Divergence in the 3′ Untranslated Regions of Human ζ- and α-Globin mRNAs Mediates a Difference in Their Stabilities and Contributes to Efficient α-to-ζ Gene Developmental Switching. Molecular and Cellular Biology 18:4, pages 2173-2183.
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Ann Riedl & Marcelo Jacobs-Lorena. (1996) Determinants of Drosophila fushi tarazu mRNA Instability. Molecular and Cellular Biology 16:6, pages 3047-3053.
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Eva Dehlin, Alexander Von Gabain, Gunnar Alm, Ruth Dingelmaier & Orna Resnekov. (1996) Repression of Beta Interferon Gene Expression in Virus-Infected Cells Is Correlated with a Poly(A) Tail Elongation. Molecular and Cellular Biology 16:2, pages 468-474.
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Anna Maria Curatola, Marcela S. Nadal & Robert J. Schneider. (1995) Rapid Degradation of AU-Rich Element (ARE) mRNAs Is Activated by Ribosome Transit and Blocked by Secondary Structure at Any Position 5′ to the ARE. Molecular and Cellular Biology 15:11, pages 6331-6340.
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Ana M. Zubiaga, Joel G. Belasco & Michael E. Greenberg. (1995) The Nonamer UUAUUUAUU Is the Key AU-Rich Sequence Motif That Mediates mRNA Degradation. Molecular and Cellular Biology 15:4, pages 2219-2230.
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Chyi-Ying A. Chen & Ann-Bin Shyu. (1994) Selective Degradation of Early-Response-Gene mRNAs: Functional Analyses of Sequence Features of the AU-Rich Elements. Molecular and Cellular Biology 14:12, pages 8471-8482.
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Cathy A. Lagnado, Cheryl Y. Brown & Gregory J. Goodall. (1994) AUUUA Is Not Sufficient To Promote Poly(A) Shortening and Degradation of an mRNA: the Functional Sequence within AU-Rich Elements May Be UUAUUUA(U/A)(U/A). Molecular and Cellular Biology 14:12, pages 7984-7995.
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Hyun S. Shin, Beth-Ellen Drysdale, Moon L. Shin, Paul W. Noble, Stephen N. Fisher & William A. Paznekas. (1994) Definition of a Lipopolysaccharide-Responsive Element in the 5′-Flanking Regions of MuRantes and crg-2. Molecular and Cellular Biology 14:5, pages 2914-2925.
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Vito J. Palombella & Tom Maniatis. (1992) Inducible Processing of Interferon Regulatory Factor-2. Molecular and Cellular Biology 12:8, pages 3325-3336.
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Evangelia Vakalopoulou, Jerome Schaack & Thomas Shenk. (1991) A 32-Kilodalton Protein Binds to AU-Rich Domains in the 3′ Untranslated Regions of Rapidly Degraded mRNAs. Molecular and Cellular Biology 11:6, pages 3355-3364.
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Emil Aagaard Thomsen, Sofie Andersen, Mikkel Haarslev Schröder Marqvorsen, Kristian Alsbjerg Skipper, Søren R. Paludan & Jacob Giehm Mikkelsen. (2022) Single-Cell Monitoring of Activated Innate Immune Signaling by a d2eGFP-Based Reporter Mimicking Time-Restricted Activation of IFNB1 Expression. Frontiers in Cellular and Infection Microbiology 11.
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Oya CingözStephen P. Goff. (2018) Cyclin-dependent kinase activity is required for type I interferon production. Proceedings of the National Academy of Sciences 115:13.
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X. Julia Xu, Jonathan S. Reichner, Balduino Mastrofrancesco, William L. HenryJr.Jr. & Jorge E. Albina. (2008) Prostaglandin E2 Suppresses Lipopolysaccharide-Stimulated IFN-β Production. The Journal of Immunology 180:4, pages 2125-2131.
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Mary O'Riordan, Caroline H. Yi, Ramona Gonzales, Kyung-Dall Lee & Daniel A. Portnoy. (2002) Innate recognition of bacteria by a macrophage cytosolic surveillance pathway. Proceedings of the National Academy of Sciences 99:21, pages 13861-13866.
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