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Nuclear Localization of Argonaute is affected by Cell Density and May Relieve Repression by microRNAs.
Johnson, Krystal C; Kilikevicius, Audrius; Hofman, Cristina; Hu, Jiaxin; Liu, Yang; Aguilar, Selina; Graswich, Jon; Han, Yi; Wang, Tao; Westcott, Jill M; Brekken, Rolf A; Peng, Lan; Karagkounis, Georgios; Corey, David R.
Afiliação
  • Johnson KC; UT Southwestern Medical Center, Departments of Pharmacology and Biochemistry, Dallas, TX 75235.
  • Kilikevicius A; current address, Eli Lilly, Lilly Cambridge Innovation Center, Cambridge, MA 02142.
  • Hofman C; UT Southwestern Medical Center, Departments of Pharmacology and Biochemistry, Dallas, TX 75235.
  • Hu J; UT Southwestern Medical Center, Departments of Pharmacology and Biochemistry, Dallas, TX 75235.
  • Liu Y; UT Southwestern Medical Center, Departments of Pharmacology and Biochemistry, Dallas, TX 75235.
  • Aguilar S; UT Southwestern Medical Center, Departments of Pharmacology and Biochemistry, Dallas, TX 75235.
  • Graswich J; UT Southwestern Medical Center, Departments of Pharmacology and Biochemistry, Dallas, TX 75235.
  • Han Y; UT Southwestern Medical Center, Quantitative Biomedical Research Center, Department of Population and Data Sciences, Dallas, TX 75235.
  • Wang T; UT Southwestern Medical Center, Quantitative Biomedical Research Center, Department of Population and Data Sciences, Dallas, TX 75235.
  • Westcott JM; UT Southwestern Medical Center, Harold C. Simmons Comprehensive Cancer Center, Department of Surgery, Dallas, TX 75235.
  • Brekken RA; UT Southwestern Medical Center, Harold C. Simmons Comprehensive Cancer Center, Department of Surgery, Dallas, TX 75235.
  • Peng L; UT Southwestern Medical Center, Harold C. Simmons Comprehensive Cancer Center, Department of Pathology, Dallas, TX 75235.
  • Karagkounis G; UT Southwestern Medical Center, Harold C. Simmons Comprehensive Cancer Center, Department of Surgery, Dallas, TX 75235.
  • Corey DR; UT Southwestern Medical Center, Departments of Pharmacology and Biochemistry, Dallas, TX 75235.
bioRxiv ; 2023 Jul 12.
Article em En | MEDLINE | ID: mdl-37461596
ABSTRACT
Argonaute protein is associated with post-transcriptional control of cytoplasmic gene expression through miRNA-induced silencing complexes (miRISC). Specific cellular and environmental conditions can trigger AGO protein to accumulate in the nucleus. Localization of AGO is central to understanding miRNA action, yet the consequences of AGO being in the nucleus are undefined. We show nuclear enrichment of AGO2 in HCT116 cells grown in two-dimensional culture to high density, HCT116 cells grown in three-dimensional tumor spheroid culture, and human colon tumors. The shift in localization of AGO2 from cytoplasm to nucleus de-represses cytoplasmic AGO2-eCLIP targets that were candidates for canonical regulation by miRISC. Constitutive nuclear localization of AGO2 using an engineered nuclear localization signal increases cell migration. Critical RNAi factors also affect the localization of AGO2. Knocking out an enzyme essential for miRNA biogenesis, DROSHA, depletes mature miRNAs and restricts AGO2 localization to the cytoplasm, while knocking out the miRISC scaffolding protein, TNRC6, results in nuclear localization of AGO2. These data suggest that AGO2 localization and miRNA activity can be regulated depending on environmental conditions, expression of mature miRNAs, and expression of miRISC cofactors. Localization and expression of core miRISC protein machinery should be considered when investigating the roles of miRNAs.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article