Date published: 2026-6-6

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Atg2A Antibodies

Santa Cruz Biotechnology provides a broad selection of Atg2A monoclonal antibodies for research in autophagy and cellular homeostasis. Atg2A Antibodies are validated for multiple applications, including western blotting (WB), immunoprecipitation (IP), immunofluorescence (IF), immunohistochemistry with paraffin-embedded sections (IHCP), flow cytometry (FCM), and enzyme-linked immunosorbent assay (ELISA). Atg2A plays a critical role in the autophagic process, facilitating the transport of lipids and proteins to autophagosomes, which are essential for cellular degradation and recycling. Atg2A is vital for maintaining cellular health and has implications in various diseases, including neurodegenerative disorders and cancer. Understanding Atg2A function can provide insights into the mechanisms of autophagy and its impact on cellular function. Research has shown that Atg2A is essential for autophagosome formation and proper autophagic flux. Recent studies have highlighted the significance of Atg2A in cellular stress responses and metabolic regulation. Investigating Atg2A's role in autophagy using Santa Cruz Biotechnology monoclonal antibodies can help advance scientific understanding of cellular processes and disease mechanisms.

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Atg2A Antibodies

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Atg2A Antibody (G-1)

sc-514207mouse IgG1 κ26-43 (h)WB, IP, IF, ELISAm, r, h
1
(4)

Atg2A CRISPR Knockout, HDR and Double Nickase Plasmids

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Atg2A Double Nickase Plasmid (h)

sc-411671-NIChGene KnockoutPuromycin0
(0)

Atg2A Double Nickase Plasmid (h2)

sc-411671-NIC-2hGene KnockoutPuromycin0
(0)

Atg2A siRNA, shRNA Plasmid and shRNA Lentiviral Particle Gene Silencers

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Atg2A siRNA (h)

sc-96345hGene SilencingN/A
3
(0)

Atg2A shRNA Plasmid (h)

sc-96345-SHhGene SilencingPuromycin
3
(0)

Atg2A shRNA (h) Lentiviral Particles

sc-96345-VhGene SilencingPuromycin
3
(0)

Atg2A siRNA (m)

sc-141321mGene SilencingN/A0
(0)

Atg2A shRNA Plasmid (m)

sc-141321-SHmGene SilencingPuromycin0
(0)

Atg2A shRNA (m) Lentiviral Particles

sc-141321-VmGene SilencingPuromycin0
(0)