scholarly article | Q13442814 |
P50 | author | Francisco Sánchez-Madrid | Q40058345 |
Peter N. Monk | Q40648708 | ||
María Yáñez-Mó | Q41608595 | ||
Esther Lafuente | Q58924364 | ||
Carlos Cabanas | Q58924489 | ||
P2093 | author name string | Isidoro González-Alvaro | |
Maria Dolores Gutiérrez-López | |||
Carmen Domínguez | |||
Susana Ovalle | |||
Alvaro Gilsanz | |||
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Structural requirements for the inhibitory action of the CD9 large extracellular domain in sperm/oocyte binding and fusion | Q24298326 | ||
Identification of SAP97 as an intracellular binding partner of TACE | Q24298989 | ||
Evidence for regulation of the tumor necrosis factor alpha-convertase (TACE) by protein-tyrosine phosphatase PTPH1 | Q24305944 | ||
Integrin alpha5beta1 and ADAM-17 interact in vitro and co-localize in migrating HeLa cells | Q24309589 | ||
Tetraspanin12 regulates ADAM10-dependent cleavage of amyloid precursor protein | Q24642700 | ||
Tetraspanin proteins regulate membrane type-1 matrix metalloproteinase-dependent pericellular proteolysis | Q24649625 | ||
Role of the integrin-associated protein CD9 in binding between sperm ADAM 2 and the egg integrin alpha6beta1: implications for murine fertilization | Q24675158 | ||
Tumor necrosis factor-alpha converting enzyme | Q28208634 | ||
Complexes of tetraspanins with integrins: more than meets the eye | Q28210099 | ||
The ADAM metalloproteinases | Q28292696 | ||
Sequence-specific interaction between the disintegrin domain of mouse ADAM 3 and murine eggs: role of beta1 integrin-associated proteins CD9, CD81, and CD98. | Q30307197 | ||
Potentiation of the ligand-binding activity of integrin alpha3beta1 via association with tetraspanin CD151 | Q33837431 | ||
Nardilysin enhances ectodomain shedding of heparin-binding epidermal growth factor-like growth factor through activation of tumor necrosis factor-alpha-converting enzyme | Q34559326 | ||
Lateral organization of membrane proteins: tetraspanins spin their web. | Q34979935 | ||
Defective valvulogenesis in HB-EGF and TACE-null mice is associated with aberrant BMP signaling | Q35032897 | ||
Structure and functions of tumor necrosis factor-alpha converting enzyme | Q35546050 | ||
Tetraspanin Proteins Mediate Cellular Penetration, Invasion, and Fusion Events and Define a Novel Type of Membrane Microdomain | Q35564822 | ||
Metalloproteinase inhibitors for the disintegrin-like metalloproteinases ADAM10 and ADAM17 that differentially block constitutive and phorbol ester-inducible shedding of cell surface molecules. | Q36074351 | ||
The metalloprotease Kuzbanian (ADAM10) mediates the transactivation of EGF receptor by G protein-coupled receptors | Q36323845 | ||
The tetraspanin CD9 associates with transmembrane TGF-alpha and regulates TGF-alpha-induced EGF receptor activation and cell proliferation | Q36327499 | ||
Emerging roles for ectodomain shedding in the regulation of inflammatory responses | Q36432148 | ||
Membrane microdomains and proteomics: lessons from tetraspanin microdomains and comparison with lipid rafts | Q36655075 | ||
Endothelial adhesion receptors are recruited to adherent leukocytes by inclusion in preformed tetraspanin nanoplatforms | Q36955726 | ||
Regulation of the proteolytic disintegrin metalloproteinases, the 'Sheddases'. | Q37289019 | ||
The "a disintegrin and metalloprotease" (ADAM) family of sheddases: physiological and cellular functions | Q37339450 | ||
Tetraspanin-enriched microdomains: a functional unit in cell plasma membranes | Q37587580 | ||
Recombinant extracellular domains of tetraspanin proteins are potent inhibitors of the infection of macrophages by human immunodeficiency virus type 1. | Q39069264 | ||
Tetraspanins regulate ADAM10-mediated cleavage of TNF-alpha and epidermal growth factor | Q39921892 | ||
The tetraspanin CD9 inhibits the proliferation and tumorigenicity of human colon carcinoma cells. | Q40117083 | ||
FHL2 interacts with both ADAM-17 and the cytoskeleton and regulates ADAM-17 localization and activity | Q40291367 | ||
Tumor necrosis factor-alpha-converting enzyme (TACE/ADAM-17) mediates the ectodomain cleavage of intercellular adhesion molecule-1 (ICAM-1). | Q40342802 | ||
Circulating adhesion molecules in disease | Q40385135 | ||
Chronic ethanol enhances ectodomain shedding in T cells and monocytes | Q40516032 | ||
Evidence for specific tetraspanin homodimers: inhibition of palmitoylation makes cysteine residues available for cross-linking | Q40626692 | ||
Application of peptides containing the cleavage sequence of pro-TNFalpha in assessing TACE activity of whole cells. | Q40677184 | ||
A functionally relevant conformational epitope on the CD9 tetraspanin depends on the association with activated beta1 integrin | Q40692932 | ||
Mitogen-activated protein kinase-dependent and -independent routes control shedding of transmembrane growth factors through multiple secretases. | Q40740565 | ||
Functional analysis of the domain structure of tumor necrosis factor-alpha converting enzyme | Q40881816 | ||
Enhancement of the surface expression of tumor necrosis factor alpha (TNFalpha) but not the p55 TNFalpha receptor in the THP-1 monocytic cell line by matrix metalloprotease inhibitors | Q40980471 | ||
Regulation of endothelial cell motility by complexes of tetraspan molecules CD81/TAPA-1 and CD151/PETA-3 with alpha3 beta1 integrin localized at endothelial lateral junctions | Q41035046 | ||
Role of membrane-anchored heparin-binding epidermal growth factor-like growth factor and CD9 on macrophages | Q41067946 | ||
Cell surface glycoproteins expressed on activated human T cells induce production of interleukin-1 beta by monocytic cells: a possible role of CD69. | Q41579816 | ||
Regulation of the VLA integrin-ligand interactions through the beta 1 subunit | Q41909450 | ||
Interleukin-15 and interferon-gamma participate in the cross-talk between natural killer and monocytic cells required for tumour necrosis factor production | Q42058247 | ||
TACE/ADAM-17 enzymatic activity is increased in response to cellular stimulation | Q42445689 | ||
ADAM17 but not ADAM10 mediates tumor necrosis factor-alpha and L-selectin shedding from leukocyte membranes | Q43595800 | ||
MT1-MMP collagenolytic activity is regulated through association with tetraspanin CD151 in primary endothelial cells | Q45401643 | ||
Endothelial tetraspanin microdomains regulate leukocyte firm adhesion during extravasation | Q57282535 | ||
Suppression of pulmonary metastasis using adenovirally motility related protein-1 (MRP-1/CD9) gene delivery | Q64380300 | ||
Cytokine-activated human endothelial monolayers support enhanced neutrophil transmigration via a mechanism involving both endothelial-leukocyte adhesion molecule-1 and intercellular adhesion molecule-1 | Q67681256 | ||
Motility-related protein-1 (MRP-1/CD9) reduction as a factor of poor prognosis in breast cancer | Q71102443 | ||
P433 | issue | 19 | |
P304 | page(s) | 3275-3292 | |
P577 | publication date | 2011-03-02 | |
P1433 | published in | Cellular and Molecular Life Sciences | Q5058352 |
P1476 | title | The sheddase activity of ADAM17/TACE is regulated by the tetraspanin CD9 | |
P478 | volume | 68 |
Q28072451 | A Disintegrin and Metalloprotease 17 in the Cardiovascular and Central Nervous Systems |
Q34634022 | A mechanism of male germ cell apoptosis induced by bisphenol-A and nonylphenol involving ADAM17 and p38 MAPK activation |
Q38283936 | ADAM-family metalloproteinases in lung inflammation: potential therapeutic targets |
Q92783310 | ADAM17: An Emerging Therapeutic Target for Lung Cancer |
Q39262727 | ALCAM/CD166 adhesive function is regulated by the tetraspanin CD9. |
Q59129990 | CD9 Controls Integrin α5β1-Mediated Cell Adhesion by Modulating Its Association With the Metalloproteinase ADAM17 |
Q61809339 | CD9 regulates keratinocyte migration by negatively modulating the sheddase activity of ADAM17 |
Q35018592 | Differential surface expression of ADAM10 and ADAM17 on human T lymphocytes and tumor cells |
Q35023417 | Downregulation of CD9 in keratinocyte contributes to cell migration via upregulation of matrix metalloproteinase-9. |
Q37612597 | Dual role of ALCAM in neuroinflammation and blood-brain barrier homeostasis. |
Q38196724 | Ectoenzymes in leukocyte migration and their therapeutic potential |
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Q39162354 | Fine Tuning Cell Migration by a Disintegrin and Metalloproteinases. |
Q37891849 | Functional interplay between tetraspanins and proteases |
Q38834621 | High-resolution myogenic lineage mapping by single-cell mass cytometry |
Q37578039 | Intercellular adhesion molecule 1: recent findings and new concepts involved in mammalian spermatogenesis |
Q37856396 | Membrane proteases and tetraspanins. |
Q37978006 | Membrane trafficking pathways in Alzheimer's disease |
Q37382231 | Pancreatic cancer diagnosis by free and exosomal miRNA. |
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Q38180279 | Stromal regulation of embryonic and postnatal mammary epithelial development and differentiation |
Q95315169 | Tetraspanin CD53 Promotes Lymphocyte Recirculation by Stabilizing L-Selectin Surface Expression |
Q47194093 | Tetraspanin CD9 Limits Mucosal Healing in Experimental Colitis. |
Q94571426 | Tetraspanin CD9 affects HPV16 infection by modulating ADAM17 activity and the ERK signalling pathway |
Q39008327 | Tetraspanin CD9 modulates ADAM17-mediated shedding of LR11 in leukocytes |
Q55047515 | Tetraspanin CD9: A Key Regulator of Cell Adhesion in the Immune System. |
Q24307698 | Tetraspanin protein CD9 interacts with metalloprotease CD10 and enhances its release via exosomes |
Q38256370 | Tetraspanins in extracellular vesicle formation and function |
Q38003561 | The ADAM family: Insights into Notch proteolysis |
Q38773212 | The Emerging Role of Tetraspanins in the Proteolytic Processing of the Amyloid Precursor Protein |
Q90725986 | The Many and Varied Roles of Tetraspanins in Immune Cell Recruitment and Migration |
Q40101206 | The tetraspanin CD9 facilitates MERS-coronavirus entry by scaffolding host cell receptors and proteases. |
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