scholarly article | Q13442814 |
P50 | author | Nan Zhang | Q57338721 |
P2093 | author name string | Mark H Ginsberg | |
Brian G Petrich | |||
Rodger P McEver | |||
Zhenghui Liu | |||
Tadayuki Yago | |||
Bojing Shao | |||
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Critical protection from renal ischemia reperfusion injury by CD55 and CD59. | Q44788674 | ||
Surface fucosylation of human cord blood cells augments binding to P-selectin and E-selectin and enhances engraftment in bone marrow | Q44997562 | ||
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Multiphoton intravital microscopy of the transplanted mouse kidney | Q84747256 | ||
Adhesion molecules involved in neutrophil recruitment during sepsis-induced acute kidney injury | Q87373068 | ||
Distinct chemokine signaling regulates integrin ligand specificity to dictate tissue-specific lymphocyte homing | Q88130315 | ||
Structural basis of integrin activation by talin | Q24292977 | ||
Leukocyte ligands for endothelial selectins: specialized glycoconjugates that mediate rolling and signaling under flow | Q27027232 | ||
A structural mechanism of integrin alpha(IIb)beta(3) "inside-out" activation as regulated by its cytoplasmic face | Q27639651 | ||
The structure of an integrin/talin complex reveals the basis of inside-out signal transduction. | Q27657634 | ||
A novel membrane-dependent on/off switch mechanism of talin FERM domain at sites of cell adhesion | Q27681229 | ||
Ratio of local to systemic chemokine concentrations regulates neutrophil recruitment | Q28346168 | ||
Kindlin-3 is required for beta2 integrin-mediated leukocyte adhesion to endothelial cells | Q28507135 | ||
Integrin signaling in neutrophils and macrophages uses adaptors containing immunoreceptor tyrosine-based activation motifs | Q28585779 | ||
Vav GEFs are required for beta2 integrin-dependent functions of neutrophils | Q28590406 | ||
Elevated CXCL1 expression in gp130-deficient endothelial cells impairs neutrophil migration in mice | Q28593286 | ||
Kindlin-3 is essential for integrin activation and platelet aggregation | Q28595084 | ||
Getting to the site of inflammation: the leukocyte adhesion cascade updated | Q29547271 | ||
Neutrophils and immunity: challenges and opportunities | Q29617616 | ||
Talin Binding to Integrin ß Tails: A Final Common Step in Integrin Activation | Q29617809 | ||
Blocking P-selectin protects from ischemia/reperfusion-induced acute renal failure. | Q30304594 | ||
Protection from ischemia-reperfusion induced severe acute renal failure by blocking E-selectin | Q30305909 | ||
Integrin-associated complexes form hierarchically with variable stoichiometry in nascent adhesions | Q30371366 | ||
Rap1a activation by CalDAG-GEFI and p38 MAPK is involved in E-selectin-dependent slow leukocyte rolling | Q30426195 | ||
Rolling on E- or P-selectin induces the extended but not high-affinity conformation of LFA-1 in neutrophils | Q30427418 | ||
CXCR2- and E-selectin-induced neutrophil arrest during inflammation in vivo | Q30434720 | ||
IL-17 produced by neutrophils regulates IFN-gamma-mediated neutrophil migration in mouse kidney ischemia-reperfusion injury | Q30437432 | ||
PSGL-1 engagement by E-selectin signals through Src kinase Fgr and ITAM adapters DAP12 and FcR gamma to induce slow leukocyte rolling | Q30439982 | ||
Spleen tyrosine kinase Syk is necessary for E-selectin-induced alpha(L)beta(2) integrin-mediated rolling on intercellular adhesion molecule-1. | Q30440643 | ||
Transit time of leukocytes rolling through venules controls cytokine-induced inflammatory cell recruitment in vivo | Q30448792 | ||
P-selectin glycoprotein ligand-1-deficient mice have impaired leukocyte tethering to E-selectin under flow | Q30453100 | ||
Sequential contribution of L- and P-selectin to leukocyte rolling in vivo | Q30463937 | ||
Distinct phenotype of E-selectin-deficient mice. E-selectin is required for slow leukocyte rolling in vivo | Q30469729 | ||
Talin depletion reveals independence of initial cell spreading from integrin activation and traction | Q30490335 | ||
Tyrosine kinase Btk regulates E-selectin-mediated integrin activation and neutrophil recruitment by controlling phospholipase C (PLC) gamma2 and PI3Kgamma pathways | Q30494206 | ||
Forcing Switch from Short- to Intermediate- and Long-lived States of the αA Domain Generates LFA-1/ICAM-1 Catch Bonds | Q30497295 | ||
A chemotactic gradient sequestered on endothelial heparan sulfate induces directional intraluminal crawling of neutrophils | Q30504374 | ||
Distinct roles for talin-1 and kindlin-3 in LFA-1 extension and affinity regulation | Q30514206 | ||
Signal-dependent slow leukocyte rolling does not require cytoskeletal anchorage of P-selectin glycoprotein ligand-1 (PSGL-1) or integrin αLβ2. | Q30514480 | ||
IL-17 and TNF-α sustain neutrophil recruitment during inflammation through synergistic effects on endothelial activation | Q30515381 | ||
Observing force-regulated conformational changes and ligand dissociation from a single integrin on cells. | Q30527786 | ||
Kindlin-3 regulates integrin activation and adhesion reinforcement of effector T cells | Q30552379 | ||
New PI(4,5)P2- and membrane proximal integrin-binding motifs in the talin head control beta3-integrin clustering | Q33590915 | ||
Disruption of the talin gene arrests mouse development at the gastrulation stage | Q33925712 | ||
Core 1-derived O-glycans are essential E-selectin ligands on neutrophils | Q33927218 | ||
E-selectin engages PSGL-1 and CD44 through a common signaling pathway to induce integrin alphaLbeta2-mediated slow leukocyte rolling | Q34033865 | ||
Breaching multiple barriers: leukocyte motility through venular walls and the interstitium. | Q34111723 | ||
Intravascular Danger Signals Guide Neutrophils to Sites of Sterile Inflammation | Q34143696 | ||
Kindlin-3 is required for the stabilization of TCR-stimulated LFA-1:ICAM-1 bonds critical for lymphocyte arrest and spreading on dendritic cells. | Q34181908 | ||
A role of kindlin-3 in integrin αMβ2 outside-in signaling and the Syk-Vav1-Rac1/Cdc42 signaling axis | Q34599695 | ||
Talin-dependent integrin activation is required for fibrin clot retraction by platelets | Q34667580 | ||
Biochemical and structural properties of the integrin-associated cytoskeletal protein talin | Q34979246 | ||
Recent advances in the pathophysiology of ischemic acute renal failure | Q35182393 | ||
Regulation of integrin affinity on cell surfaces | Q35626360 | ||
Multiple, targeted deficiencies in selectins reveal a predominant role for P-selectin in leukocyte recruitment. | Q35651662 | ||
Crucial role of SLP-76 and ADAP for neutrophil recruitment in mouse kidney ischemia-reperfusion injury | Q35760832 | ||
Talin activates integrins by altering the topology of the β transmembrane domain | Q36002154 | ||
Requirement of alpha and beta subunit transmembrane helix separation for integrin outside-in signaling | Q36007725 | ||
Talin is required for integrin-mediated platelet function in hemostasis and thrombosis | Q36294415 | ||
Adora2b adenosine receptor signaling protects during acute kidney injury via inhibition of neutrophil-dependent TNF-α release | Q36836965 | ||
Separable requirements for cytoplasmic domain of PSGL-1 in leukocyte rolling and signaling under flow | Q36843799 | ||
LFA-1 is sufficient in mediating neutrophil emigration in Mac-1-deficient mice | Q37365253 | ||
The ins and outs of leukocyte integrin signaling | Q37419383 | ||
The tail of integrins, talin, and kindlins | Q37483142 | ||
Rolling cell adhesion | Q37540219 | ||
The mechanism of kindlin-mediated activation of integrin αIIbβ3. | Q37552184 | ||
A talin mutant that impairs talin-integrin binding in platelets decelerates αIIbβ3 activation without pathological bleeding | Q37723482 | ||
Pathophysiology of ischemic acute kidney injury | Q37848648 | ||
Regulation of integrin activation | Q37887794 | ||
The neutrophil in vascular inflammation | Q37953775 | ||
Neutrophil arrest by LFA-1 activation | Q38018949 | ||
Chemokine-triggered leukocyte arrest: force-regulated bi-directional integrin activation in quantal adhesive contacts. | Q38024452 | ||
Talin and kindlin: the one-two punch in integrin activation | Q38183284 | ||
Rolling adhesion through an extended conformation of integrin alphaLbeta2 and relation to alpha I and beta I-like domain interaction | Q40566983 | ||
Involvement of Src kinases and PLCgamma2 in clot retraction | Q42026902 | ||
P4510 | describes a project that uses | ImageJ | Q1659584 |
P433 | issue | 8 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | reperfusion injury | Q1413991 |
P304 | page(s) | 1267-1281 | |
P577 | publication date | 2015-07-13 | |
P1433 | published in | Journal of Experimental Medicine | Q3186912 |
P1476 | title | Blocking neutrophil integrin activation prevents ischemia-reperfusion injury | |
P478 | volume | 212 |
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Q36466204 | Replacing the Promoter of the Murine Gene Encoding P-selectin with the Human Promoter Confers Human-like Basal and Inducible Expression in Mice. |
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