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ACTN4 Matched Antibody Pair (013) (APMAB-013LY)

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Specifications

ApplIcation
Sandwich ELISA
Specificity
Human
Capture Antibody
Mouse anti-ACTN4 monoclonal, IgG1 antibody, 100 ug
Detection Antibody
Anti-ACTN4 Biotinylated mouse monoclonal, IgG2b antibody, 50 ug
Dilutions
10 ng/ml-100 ng/ml
Format
Liquid
Storage
Aliquot and store at -20°Cor -80°C. Avoid freeze-thaw cycles.
Introduction
Alpha actinins belong to the spectrin gene superfamily which represents a diverse group of cytoskeletal proteins, including the alpha and beta spectrins and dystrophins. Alpha actinin is an actin-binding protein with multiple roles in different cell types. In nonmuscle cells, the cytoskeletal isoform is found along microfilament bundles and adherens-type junctions, where it is involved in binding actin to the membrane. In contrast, skeletal, cardiac, and smooth muscle isoforms are localized to the Z-disc and analogous dense bodies, where they help anchor the myofibrillar actin filaments. This gene encodes a nonmuscle, alpha actinin isoform which is concentrated in the cytoplasm, and thought to be involved in metastatic processes. Mutations in this gene have been associated with focal and segmental glomerulosclerosis. [provided by RefSeq, Jul 2008]
Alternative Names
Actinin Alpha 4; Focal Segmental Glomerulosclerosis 1; Non-Muscle Alpha-Actinin 4; Alpha-Actinin-4; ACTININ-4; FSGS1; FSGS;
Entrez Gene ID
UniProt ID
More Infomation

Shao, H., & Wells, A. (2021). Binding of alpha-ACTN4 to EGF receptor enables its rapid phosphorylation. Heliyon, 7(1), e06011.

Xing, Z., Li, S., Liu, Z., Zhang, C., & Bai, Z. (2020). CTCF‐induced upregulation of HOXA11‐AS facilitates cell proliferation and migration by targeting miR‐518b/ACTN4 axis in prostate cancer. The Prostate, 80(5), 388-398.

Ishizuya, Y., Uemura, M., Narumi, R., Tomiyama, E., Koh, Y., Matsushita, M., ... & Nonomura, N. (2020). The role of actinin-4 (ACTN4) in exosomes as a potential novel therapeutic target in castration-resistant prostate cancer. Biochemical and biophysical research communications, 523(3), 588-594.

Lin, Y. H., Huang, C. Y., Ke, C. C., Wang, Y. Y., Lai, T. H., Liu, H. C., ... & Lin, Y. H. (2020). ACTN4 mediates SEPT14 mutation-induced sperm head defects. Biomedicines, 8(11), 518.

Tentler, D., Lomert, E., Novitskaya, K., & Barlev, N. A. (2019). Role of ACTN4 in Tumorigenesis, Metastasis, and EMT. Cells, 8(11), 1427.

Ji, J., Xu, R., Ding, K., Bao, G., Zhang, X., Huang, B., ... & Wang, J. (2019). Long noncoding RNA SChLAP1 forms a growth-promoting complex with HNRNPL in human glioblastoma through stabilization of ACTN4 and activation of NF-κB signaling. Clinical Cancer Research, 25(22), 6868-6881.

Zhao, J., Peng, W., Ran, Y., Ge, H., Zhang, C., Zou, H., ... & Qi, H. (2019). Dysregulated expression of ACTN4 contributes to endothelial cell injury via the activation of the p38-MAPK/p53 apoptosis pathway in preeclampsia. Journal of physiology and biochemistry, 75(4), 475-487.

Zhang, Y. Y., Tabataba, H., Liu, X. Y., Wang, J. Y., Yan, X. G., Farrelly, M., ... & Jin, L. (2018). ACTN4 regulates the stability of RIPK1 in melanoma. Oncogene, 37(29), 4033-4045.

Lomert, E., Turoverova, L., Kriger, D., Aksenov, N. D., Nikotina, A. D., Petukhov, A., ... & Tentler, D. (2018). Co-expression of RelA/p65 and ACTN4 induces apoptosis in non-small lung carcinoma cells. Cell Cycle, 17(5), 616-626.

Kakuya, T., Mori, T., Yoshimoto, S., Watabe, Y., Miura, N., Shoji, H., ... & Honda, K. (2017). Prognostic significance of gene amplification of ACTN4 in stage I and II oral tongue cancer. International journal of oral and maxillofacial surgery, 46(8), 968-976.

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For research use only. Not intended for any clinical use.

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We also offer labeled antibodies developed using our catalog antibody products and nonfluorescent conjugates (HRP, AP, Biotin, etc.) or fluorescent conjugates (Alexa Fluor, FITC, TRITC, Rhodamine, Texas Red, R-PE, APC, Qdot Probes, Pacific Dyes, etc.).

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