scholarly article | Q13442814 |
P356 | DOI | 10.1074/JBC.275.12.8959 |
P8608 | Fatcat ID | release_n65w2lcdsnhgdhgnilzq66mkri |
P698 | PubMed publication ID | 10722744 |
P5875 | ResearchGate publication ID | 280295481 |
P2093 | author name string | Johnson AK | |
Noti JD | |||
Dillon JD | |||
P2860 | cites work | O-glycosylation of eukaryotic transcription factors: implications for mechanisms of transcriptional regulation | Q24296741 |
Cloning of GT box-binding proteins: a novel Sp1 multigene family regulating T-cell receptor gene expression | Q24337872 | ||
Molecular cloning, sequencing, and mapping of EGR2, a human early growth response gene encoding a protein with "zinc-binding finger" structure | Q24648312 | ||
Structure and function of leukocyte integrins | Q28249413 | ||
Mapping of the human CD11c (ITGAX) and CD11d (ITGAD) genes demonstrates that they are arranged in tandem separated by no more than 11.5 kb | Q28271538 | ||
Isolation of cDNA encoding transcription factor Sp1 and functional analysis of the DNA binding domain | Q28295806 | ||
A zinc finger-encoding gene coregulated with c-fos during growth and differentiation, and after cellular depolarization | Q29618351 | ||
The "initiator" as a transcription control element | Q29619589 | ||
Cloning and chromosomal localization of a novel gene-encoding a human beta 2-integrin alpha subunit | Q34385063 | ||
A novel leukointegrin, alpha d beta 2, binds preferentially to ICAM-3. | Q34394279 | ||
Functional interactions between the retinoblastoma (Rb) protein and Sp-family members: superactivation by Rb requires amino acids necessary for growth suppression | Q34396889 | ||
A glutamine-rich hydrophobic patch in transcription factor Sp1 contacts the dTAFII110 component of the Drosophila TFIID complex and mediates transcriptional activation | Q34920038 | ||
Sp-1 binds promoter elements regulated by the RB protein and Sp-1-mediated transcription is stimulated by RB coexpression | Q36234059 | ||
The retinoblastoma gene product RB stimulates Sp1-mediated transcription by liberating Sp1 from a negative regulator | Q38306731 | ||
In vivo footprinting of rat TAT gene: Dynamic interplay between the glucocorticoid receptor and a liver-specific factor | Q38332154 | ||
Transcription Factors Sp1 and Sp3 Alter Vascular Endothelial Growth Factor Receptor Expression through a Novel Recognition Sequence | Q38335452 | ||
PU.1 negatively regulates the CD11c integrin gene promoter through recognition of the major transcriptional start site | Q38343758 | ||
Sp3 represses transcription when tethered to promoter DNA or targeted to promoter proximal RNA. | Q38359173 | ||
Regulation of the leukocyte integrin gene CD11c is mediated by AP1 and Ets transcription factors | Q38362189 | ||
Mac-1: a macrophage differentiation antigen identified by monoclonal antibody | Q39557974 | ||
LFA-1 and other accessory molecules functioning in adhesions of T and B lymphocytes | Q39592883 | ||
Functional synergy and physical interactions of the erythroid transcription factor GATA-1 with the Krüppel family proteins Sp1 and EKLF. | Q40016157 | ||
Sp1 binds two sites in the CD11c promoter in vivo specifically in myeloid cells and cooperates with AP1 to activate transcription | Q40019025 | ||
Transcriptional activation by the parvoviral nonstructural protein NS-1 is mediated via a direct interaction with Sp1 | Q40021693 | ||
Traffic signals on endothelium for lymphocyte recirculation and leukocyte emigration | Q40543299 | ||
Sp3 Mediates Transcriptional Activation of the Leukocyte Integrin Genes CD11C and CD11B and Cooperates with c-Jun to Activate CD11C | Q41091025 | ||
Identification of Sp1-binding sites in the CD11c (p150,95 alpha) and CD11a (LFA-1 alpha) integrin subunit promoters and their involvement in the tissue-specific expression of CD11c. | Q41264896 | ||
The leukocyte integrin gene CD11c is transcriptionally regulated during monocyte differentiation | Q41353454 | ||
Human p150,95 alpha-subunit: genomic organization and analysis of the 5'-flanking region | Q41637110 | ||
Transcriptional regulation by the Sp family proteins. | Q41756422 | ||
CCAAT-Enhancer-binding Proteins (C/EBP) Regulate the Tissue Specific Activity of the CD11c Integrin Gene Promoter Through Functional Interactions with Sp1 Proteins | Q42446712 | ||
Role of p150,95 in adhesion, migration, chemotaxis and phagocytosis of human monocytes | Q70037913 | ||
P433 | issue | 12 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 8959-8969 | |
P577 | publication date | 2000-03-01 | |
P1433 | published in | Journal of Biological Chemistry | Q867727 |
P1476 | title | Structural and functional characterization of the leukocyte integrin gene CD11d. Essential role of Sp1 and Sp3. | |
P478 | volume | 275 |
Q52595898 | A highly active homeobox gene promoter regulated by Ets and Sp1 family members in normal granulosa cells and diverse tumor cell types |
Q35994891 | Activation of the Jak3 pathway and myeloid differentiation |
Q39737395 | Beta2 integrins are required for skin homing of primed T cells but not for priming naive T cells |
Q34650149 | CD11b of Ovis canadensis and Ovis aries: molecular cloning and characterization |
Q38301697 | Characterization of Inherited Differences in Transcription of the Human Integrin alpha 2 Gene |
Q30308425 | Control of leukocyte rolling velocity in TNF-α–induced inflammation by LFA-1 and Mac-1 |
Q43733249 | Cutaneous histiocytic sarcoma with E-cadherin expression in a Pembroke Welsh Corgi dog. |
Q33285072 | Down-regulation of human topoisomerase IIalpha expression correlates with relative amounts of specificity factors Sp1 and Sp3 bound at proximal and distal promoter regions |
Q40766643 | During U937 monocytic differentiation repression of the CD43 gene promoter is mediated by the single‐stranded DNA binding protein Purα |
Q36065887 | Effect of traditional Chinese medicinal enemas on ulcerative colitis of rats |
Q36046388 | Host resistance of CD18 knockout mice against systemic infection with Listeria monocytogenes |
Q36853106 | Human spinal cord injury causes specific increases in surface expression of β integrins on leukocytes. |
Q37340872 | Intact signal peptide of CD18, the beta-subunit of beta2-integrins, renders ruminants susceptible to Mannheimia haemolytica leukotoxin |
Q34557811 | Integrin αDβ2 (CD11d/CD18) is expressed by human circulating and tissue myeloid leukocytes and mediates inflammatory signaling |
Q34663124 | Monomeric expression of bovine beta2-integrin subunits reveals their role in Mannheimia haemolytica leukotoxin-induced biological effects |
Q34370628 | The leukocyte integrin gene CD11d is repressed by gut-enriched Kruppel-like factor 4 in myeloid cells |
Q31814879 | The zinc finger transcription factor transforming growth factor beta-inducible early gene-1 confers myeloid-specific activation of the leukocyte integrin CD11d promoter |
Q39940985 | Transcription factors Sp1 and C/EBP regulate NRAMP1 gene expression |
Q34042666 | Transcription of the transforming growth factor beta activating integrin beta8 subunit is regulated by SP3, AP-1, and the p38 pathway |
Q34560830 | Transcriptional mechanisms regulating myeloid-specific genes |
Q36731657 | Transient blockage of the CD11d/CD18 integrin reduces contusion volume and macrophage infiltration after traumatic brain injury in rats |
Q40014819 | beta(2) integrin Mac-1 is a receptor for Mannheimia haemolytica leukotoxin on bovine and ovine leukocytes |
Q40740551 | beta1 and beta2 integrins activate different signalling pathways in monocytes |
Q35539301 | beta2-integrins in demyelinating disease: not adhering to the paradigm |
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