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MABF264
Sigma-AldrichAnti-AIP1/WD repeat-containing protein 1, clone 13F10 Antibody
This Anti-AIP1/WD repeat-containing protein 1, clone 13F10 Antibody is validated for use in Western Blotting for the detection of AIP1/WD repeat-containing protein 1.
More>>This Anti-AIP1/WD repeat-containing protein 1, clone 13F10 Antibody is validated for use in Western Blotting for the detection of AIP1/WD repeat-containing protein 1. Less<<
SDB (Sicherheitsdatenblätter), Analysenzertifikate und Qualitätszertifikate, Dossiers, Broschüren und andere verfügbare Dokumente.
Anti-AIP1/WD repeat-containing protein 1, clone 13F10 Antibody
Alternate Names
WD repeat-containing protein 1
Actin-interacting protein 1
AIP1
AIP1/WD repeat-containing protein 1
Background Information
Actin-interacting protein 1 (AIP1), also known as WD repeat-containing protein 1 (Wdr1), is a key player in cytoskeletal rearrangements and actin mobilization, and thus plays a role in many cellular situations from movement to cytokinesis. AIP1 interacts with Cofilin as well, and Cofilin regulates actin filament dynamics by stimulating actin filament disassembly and also plays a critical role in cytokinesis and chemotactic migration. Knockdown of AIP1 in HeLa cells increased the percentage of multinucleate cells and the mechanics of cytokinesis were altered with an excessive buildup of actin filaments at telophase. The results could be relieved by overexpression of Cofilin pointing to AIP1’s critical role in Cofilin-mediated actin filament disassembly. Furthermore, AIP1 inhibition caused abnormal cell migration in response to cytokine stimulation leading to a non-directional migration phenotype thus indicating that AIP1 plays an important directional role in response to stimuli as well. Finally AIP1, as one might expect, plays a critical role in development of cells and tissues, especially in epithelial morphogenesis for instance.
References
Product Information
Format
Purified
Presentation
Purified rat monoclonal IgG2bκ in buffer containing 0.1 M Tris-Glycine (pH 7.4), 150 mM NaCl with 0.05% sodium azide.
This Anti-AIP1/WD repeat-containing protein 1, clone 13F10 Antibody is validated for use in Western Blotting for the detection of AIP1/WD repeat-containing protein 1.
Key Applications
Western Blotting
Application Notes
Western Blotting Analysis: A representative lot detected AIP1/WD repeat-containing protein 1 in both endogenous and transfected mouse AIP1 in western blots of cell lysates from J774 cells, 293T cells and 293T cells transfected with HA-tagged mouse Aip1 (Li, J., et al. (2007). Nature. 9(3):276-286).
Biological Information
Immunogen
Recombinant protein corresponding to mouse AIP1/WD repeat-containing protein 1.
Evaluated by Western Blotting in RAW264.7 cell lysate.
Western Blotting Analysis: 1.0 µg/mL of this antibody detected AIP1/WD repeat-containing protein 1 in 10 µg of RAW264.7 cell lysate.
Usage Statement
Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.
Storage and Shipping Information
Storage Conditions
Stable for 1 year at 2-8°C from date of receipt.
Packaging Information
Material Size
100 µg
Transport Information
Supplemental Information
Specifications
Global Trade Item Number
Bestellnummer
GTIN
MABF264
04053252993145
Documentation
Anti-AIP1/WD repeat-containing protein 1, clone 13F10 Antibody Analysenzertifikate
During epithelial morphogenesis, cells not only maintain tight adhesion for epithelial integrity but also allow dynamic intercellular movement to take place within cell sheets. How these seemingly opposing processes are coordinated is not well understood. Here, we report that the actin disassembly factors AIP1 and cofilin are required for remodeling of adherens junctions (AJs) during ommatidial precluster formation in Drosophila eye epithelium, a highly stereotyped cell rearrangement process which we describe in detail in our live imaging study. AIP1 is enriched together with F-actin in the apical region of preclusters, whereas cofilin displays a diffuse and uniform localization pattern. Cofilin overexpression completely rescues AJ remodeling defects caused by AIP1 loss of function, and cofilin physically interacts with AIP1. Pharmacological reduction of actin turnover results in similar AJ remodeling defects and decreased turnover of E-cadherin, which also results from AIP1 deficiency, whereas an F-actin-destabilizing drug affects AJ maintenance and epithelial integrity. Together with other data on actin polymerization, our results suggest that AIP1 enhances cofilin-mediated actin disassembly in the apical region of precluster cells to promote remodeling of AJs and thus intercellular movement, but also that robust actin polymerization promotes AJ general adhesion and integrity during the remodeling process.
Critical roles of actin-interacting protein 1 in cytokinesis and chemotactic migration of mammalian cells. Kato, A; Kurita, S; Hayashi, A; Kaji, N; Ohashi, K; Mizuno, K The Biochemical journal
414
261-70
2008
Cofilin regulates actin filament dynamics by stimulating actin filament disassembly and plays a critical role in cytokinesis and chemotactic migration. Aip1 (actin-interacting protein 1), also called WDR1 (WD-repeat protein 1), is a highly conserved WD-repeat protein in eukaryotes and promotes cofilin-mediated actin filament disassembly in vitro; however, little is known about the mechanisms by which Aip1 functions in cytokinesis and cell migration in mammalian cells. In the present study, we investigated the roles of Aip1 in cytokinesis and chemotactic migration of human cells by silencing the expression of Aip1 using siRNA (small interfering RNA). Knockdown of Aip1 in HeLa cells increased the percentage of multinucleate cells; this effect was reversed by expression of an active form of cofilin. In Aip1-knockdown cells, the cleavage furrow ingressed normally from anaphase to early telophase; however, an excessive accumulation of actin filaments was observed on the contractile ring in late telophase. These results suggest that Aip1 plays a crucial role in the completion of cytokinesis by promoting cofilin-mediated actin filament disassembly in telophase. We have also shown that Aip1 knockdown significantly suppressed chemokine-induced chemotactic migration of Jurkat T-lymphoma cells, and this was blocked by expression of an active form of cofilin. Whereas control cells mostly formed a single lamellipodium in response to chemokine stimulation, Aip1 knockdown cells abnormally exhibited multiple protrusions around the cells before and after cell stimulation. This indicates that Aip1 plays an important role in directional cell migration by restricting the stimulus-induced membrane protrusion to one direction via promoting cofilin activity.
Coordinated regulation of cell migration, cytokine maturation and apoptosis is critical in inflammatory responses. Caspases, a family of cysteine proteases, are known to regulate cytokine maturation and apoptosis. Here, we show that caspase-11, a mammalian pro-inflammatory caspase, regulates cell migration during inflammation. Caspase-11-deficient lymphocytes exhibit a cell-autonomous migration defect in vitro and in vivo. We demonstrate that caspase-11 interacts physically and functionally with actin interacting protein 1 (Aip1), an activator of cofilin-mediated actin depolymerization. The caspase-recruitment domain (CARD) of caspase-11 interacts with the carboxy-terminal WD40 propeller domain of Aip1 to promote cofilin-mediated actin depolymerization. Cells with Aip1 or caspase-11 deficiency exhibit defects in actin dynamics. Using in vitro actin depolymerization assays, we found that caspase-11 and Aip1 work cooperatively to promote cofilin-mediated actin depolymerization. These data demonstrate a novel cell autonomous caspase-mediated mechanism that regulates actin dynamics and mammalian cell migration distinct from the receptor mediated Rho-Rac-Cdc42 pathway.