%D8%A3%D9%84%D9%83%D8%B3%D9%86%D8%AF%D8%B1_%D8%B1%D9%88%D8%AF%D9%86%D8%B3%D9%83%D9%8AAlexander_Y._RudenskyAlexander_RudenskyAlexander_Rudensky%D0%A0%D1%83%D0%B4%D0%B5%D0%BD%D1%81%D0%BA%D0%B8%D0%B9,_%D0%90%D0%BB%D0%B5%D0%BA%D1%81%D0%B0%D0%BD%D0%B4%D1%80_%D0%AE%D1%80%D1%8C%D0%B5%D0%B2%D0%B8%D1%87Q21012878
about
sameAs
Characterization of mouse and human B7-H3 genesThe role of the transcription factor Foxp3 in the development of regulatory T cells.Control of regulatory T cell lineage commitment and maintenance.A comparative encyclopedia of DNA elements in the mouse genomeMouse regulatory DNA landscapes reveal global principles of cis-regulatory evolutionControl of immune homeostasis by naturally arising regulatory CD4+ T cells.Proteolytic processing of dynamin by cytoplasmic cathepsin L is a mechanism for proteinuric kidney disease.Regulation of immunity by self-reactive T cells.Cathepsin L regulates CD4+ T cell selection independently of its effect on invariant chain: a role in the generation of positively selecting peptide ligandsDifferential regulation of cathepsin S and cathepsin L in interferon gamma-treated macrophages.Feedback control of regulatory T cell homeostasis by dendritic cells in vivo.Molecular orchestration of differentiation and function of regulatory T cells.Transcriptional control of regulatory T-cell differentiation.Foxp3 and dominant tolerance.Regulation of thymic epithelium by keratinocyte growth factor.A nonimmune function of T cells in promoting lung tumor progression.Synthesis, stabilization, and characterization of the MR1 ligand precursor 5-amino-6-D-ribitylaminouracil (5-A-RU).CD49b defines functionally mature Treg cells that survey skin and vascular tissuesNemo-like Kinase Drives Foxp3 Stability and Is Critical for Maintenance of Immune Tolerance by Regulatory T CellsHomeostasis and anergy of CD4(+)CD25(+) suppressor T cells in vivoTranscription factor Foxp1 regulates Foxp3 chromatin binding and coordinates regulatory T cell functionFoxP3 and Ezh2 regulate Tfr cell suppressive function and transcriptional programThe effect of cellular context on miR-155-mediated gene regulation in four major immune cell typesTherapeutic use of regulatory T cells for graft-versus-host diseaseIL-2 production by self-reactive CD4 thymocytes scales regulatory T cell generation in the thymusBacterial metabolism of bile acids promotes generation of peripheral regulatory T cells
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description
Ameerika Ühendriikide ülikooli õppejõud
@et
American university teacher
@en
Amerikaans hoogleraar
@nl
profesor universitar american
@ro
profesor universitar amerikan
@sq
profesor universitario estadounidense
@es
profesor universitario estadounidense
@gl
profesor universitariu estauxunidense
@ast
professeur d'université américain
@fr
professor d'universitat estatunidenc
@ca
name
Alexander Rudensky
@ast
Alexander Rudensky
@ca
Alexander Rudensky
@en
Alexander Rudensky
@es
Alexander Rudensky
@fr
Alexander Rudensky
@nl
Alexander Rudensky
@pt
Alexander Rudensky
@sl
Alexander Y. Rudensky
@de
Руденский, Александр Юрьевич
@ru
type
label
Alexander Rudensky
@ast
Alexander Rudensky
@ca
Alexander Rudensky
@en
Alexander Rudensky
@es
Alexander Rudensky
@fr
Alexander Rudensky
@nl
Alexander Rudensky
@pt
Alexander Rudensky
@sl
Alexander Y. Rudensky
@de
Руденский, Александр Юрьевич
@ru
altLabel
Alexander Y Rudensky
@en
prefLabel
Alexander Rudensky
@ast
Alexander Rudensky
@ca
Alexander Rudensky
@en
Alexander Rudensky
@es
Alexander Rudensky
@fr
Alexander Rudensky
@nl
Alexander Rudensky
@pt
Alexander Rudensky
@sl
Alexander Y. Rudensky
@de
Руденский, Александр Юрьевич
@ru
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0000 0003 7320 1914
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n2007181698
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P2798
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P496
0000-0003-1280-2898
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P569
1956-08-21T00:00:00Z