about
The TFIID components human TAF(II)140 and Drosophila BIP2 (TAF(II)155) are novel metazoan homologues of yeast TAF(II)47 containing a histone fold and a PHD fingerThe LDL Receptor-Related Protein 1: At the Crossroads of Lipoprotein Metabolism and Insulin SignalingThe homologous Drosophila transcriptional adaptors ADA2a and ADA2b are both required for normal development but have different functions.Macrophage LRP1 suppresses neo-intima formation during vascular remodeling by modulating the TGF-β signaling pathway.Two different Drosophila ADA2 homologues are present in distinct GCN5 histone acetyltransferase-containing complexes.LDL Receptor-Related Protein-1 (LRP1) Regulates Cholesterol Accumulation in Macrophages.Tissue-type plasminogen activator suppresses activated stellate cells through low-density lipoprotein receptor-related protein 1Distinct p53 acetylation cassettes differentially influence gene-expression patterns and cell fate.LRP in Endothelial Cells: A Little Goes a Long Way.Salmonella pathogenesis reveals that BMP signaling regulates blood cell homeostasis and immune responses in DrosophilaLow-density lipoprotein receptor-related protein-1: role in the regulation of vascular integrity.Intimate relationship between the genes of two transcriptional coactivators, ADA2a and PIMT, of Drosophila.Matrilin-2, a large, oligomeric matrix protein, is expressed by a great variety of cells and forms fibrillar networks.Correction: LDL Receptor-Related Protein-1 (LRP1) Regulates Cholesterol Accumulation in Macrophages.Smooth muscle cell deletion of low-density lipoprotein receptor-related protein 1 augments angiotensin II-induced superior mesenteric arterial and ascending aortic aneurysms.Regulation of Drosophila friend of GATA gene, u-shaped, during hematopoiesis: a direct role for serpent and lozenge.Terminal differentiation of chondrocytes is arrested at distinct stages identified by their expression repertoire of marker genes.
P50
Q24291405-E84E3F89-BD4C-44A0-A196-0ACCCE7DFA56Q33726334-11C7D530-ABA2-4FD9-8EAC-9DB6A8E9A44CQ34042762-580CB786-3C18-4EFA-8F75-A4E76388F535Q34103433-BE209F09-57F5-4F9E-AF4F-F5C63D7EEBFDQ34462842-29FD875B-8D26-4D71-9C35-3F9B8A9FAD7FQ35659751-EE012F8B-20A6-4E64-AFA1-1795007B10EFQ36101672-0EDF3316-0CD2-4B99-ABA6-C904C1343060Q36117542-57BE4666-9CC3-4B27-B221-DD0AB2B6A594Q36519473-345A22FB-85EB-4B74-A21A-3A8CBAA14E9DQ36908148-4B35BB4D-4769-4AFB-AC50-28EF4103AF59Q38185972-1452B14E-0BAD-408D-A6BC-97B61B0F8E38Q40445364-CA2F2559-92A2-4D7B-9F6C-D1557340366EQ40957434-16624546-9F9D-4179-9E37-3140BD3A76B8Q43076063-756A1C41-308A-42CD-8C47-E8DB712BF704Q43152507-A081717F-89CA-4B43-ABAA-8D8E438BF45BQ47069980-6364F564-8E8E-4220-BCFD-F45288ACEC13Q52181779-FD515F11-1F2D-4734-80EE-C1763968DAD9
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description
researcher
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wetenschapper
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հետազոտող
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name
Selen C. Muratoglu
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Selen C. Muratoglu
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Selen C. Muratoglu
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Selen C. Muratoglu
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Selen C. Muratoglu
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Selen C. Muratoglu
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Selen C. Muratoglu
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Selen C. Muratoglu
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Selen C. Muratoglu
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Selen C. Muratoglu
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Selen M Catania
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Selen C. Muratoglu
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Selen C. Muratoglu
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Selen C. Muratoglu
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Selen C. Muratoglu
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Selen C. Muratoglu
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P1153
6506221020
P31
P496
0000-0002-1804-4875