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Scurfin (FOXP3) Acts as a Repressor of Transcription and Regulates T Cell Activation

Data up to Jan 2025

Published2001
Citations551
References46

Total Citations Per Year

Abstract

References (46)

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Disruption of a new forkhead/winged-helix protein, scurfin, results in the fatal lymphoproliferative disorder of the scurfy mouse

2001 • 2,503 citations

CTLA-4 can function as a negative regulator of T cell activation

1994 • 2,107 citations

X-linked neonatal diabetes mellitus, enteropathy and endocrinopathy syndrome is the human equivalent of mouse scurfy

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1994 • 357 citations

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The scurfy mouse mutant has previously unrecognized hematological abnormalities and resembles Wiskott-Aldrich syndrome.

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CD4+CD8- T cells are the effector cells in disease pathogenesis in the scurfy (sf) mouse.

1994 • 182 citations

Fatal lymphoreticular disease in the scurfy (sf) mouse requires T cells that mature in a sf thymic environment: potential model for thymic education.

1991 • 175 citations

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1996 • 167 citations

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1999 • 160 citations

Human Granulocyte-Macrophage Colony-Stimulating Factor Enhancer Function Is Associated with Cooperative Interactions between AP-1 and NFATp/c

1995 • 133 citations

Disease in the scurfy (sf) mouse is associated with overexpression of cytokine genes

1996 • 120 citations

Role of Transcriptional Repressor ICER in Cyclic AMP-mediated Attenuation of Cytokine Gene Expression in Human Thymocytes

1998 • 112 citations

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1999 • 103 citations

The whn transcription factor encoded by the nude locus contains an evolutionarily conserved and functionally indispensable activation domain.

1996 • 92 citations

The Human gp39 Promoter

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FREAC-1 Contains a Cell-Type-Specific Transcriptional Activation Domain and Is Expressed in Epithelial–Mesenchymal Interfaces

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Dominant negative mutant of c-Jun inhibits NF-AT transcriptional activity and prevents IL-2 gene transcription.

1994 • 81 citations

Transplantation of T cell-mediated, lymphoreticular disease from the scurfy (sf) mouse.

1994 • 75 citations

Structural changes in the region directly adjacent to the DNA-binding helix highlight a possible mechanism to explain the observed changes in the sequence-specific binding of winged helix proteins 1 1Edited by P. E. Wright

1998 • 72 citations

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1993 • 68 citations

The Human Forkhead Protein FREAC-2 Contains Two Functionally Redundant Activation Domains and Interacts with TBP and TFIIB

1998 • 65 citations

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2000 • 64 citations

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2000 • 63 citations

The Thyroid Transcription Factor 2 (TTF-2) Is a Promoter-Specific DNA-Binding Independent Transcriptional Repressor

2000 • 61 citations

The Mouse Homolog of the Wiskott–Aldrich Syndrome Protein (WASP) Gene Is Highly Conserved and Maps near the Scurfy (sf) Mutation on the X Chromosome

1995 • 46 citations

The murine mutation scurfy (sf) results in an antigen-dependent lymphoproliferative disease with altered T cell sensitivity

2001 • 43 citations

The proximal promoter of the IL-4 gene is composed of multiple essential regulatory sites that bind at least two distinct factors.

1995 • 35 citations

The mouse scurfy (sf) mutation is tightly linked to Gata1 and Tfe3 on the proximal X Chromosome

1994 • 24 citations

Molecular cloning of FKHRL1P2, a member of the developmentally regulated fork head domain transcription factor family

1998 • 4 citations

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Scurfin (FOXP3) Acts as a Repressor of Transcription and Regulates T Cell Activation (2001) – Journal of Biological Chemistry | Metascience Observatory Explorer