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SMAP2 encodes a member of the SPARC family (secreted protein acidic and rich in cysteine/osteonectin/BM-40), which are highly expressed during embryogenesis and wound healing. Additionally we are shipping SMAP2 Antibodies (34) and and many more products for this protein.
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SMAP2 (show BRD8 Proteins) immunoprecipitated clathrin and AP-1 (show FOSB Proteins) through a putative clathrin-binding domain and a CALM-binding domain, and SMAP2 (show BRD8 Proteins) mutants that did not interact with clathrin or AP-1 (show FOSB Proteins) could not localize to recycling endosomes
Results also demonstrated a physical association between SMAP1 (show UNC45A Proteins) and SMAP2 (show BRD8 Proteins), which might serve as a basis for a functional interaction, and identified the intramolecular domains responsible for this association
In the current study, there were identified sequences in the carboxy-terminal region of SMAP2 that are critical for its specific subcellular localization and its specificity for Arf proteins.
either SMAP1 (show SMAP1 Proteins) or SMAP2, is required for proper embryogenesis
study reveals a link between SMAP2 and CALM/syntaxin2 in clathrin-coated vesicle formation from the trans-Golgi network and subsequent acrosome formation
the trans-Golgi network (TGN (show TG Proteins)) was verified as an additional site of SMAP2 localization based on its co-localization with various TGN (show TG Proteins)-marker proteins.
SMAP2 has an ability to mediate the 2,4-dichlorophenoxyacetic acid response and is expressed only in restricted tissues.
This gene encodes a member of the SPARC family (secreted protein acidic and rich in cysteine/osteonectin/BM-40), which are highly expressed during embryogenesis and wound healing. The gene product is a matricellular protein which promotes matrix assembly and can stimulate endothelial cell proliferation and migration, as well as angiogenic activity. Associated with pulmonary function, this secretory gene product contains a Kazal domain, two thymoglobulin type-1 domains, and two EF-hand calcium-binding domains. The encoded protein may serve as a target for controlling angiogenesis in tumor growth and myocardial ischemia. Alternative splicing results in multiple transcript variants.
stromal membrane-associated GTPase-activating protein 2
, stromal membrane-associated protein 2
, small ArfGAP2