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ATG7 mouse Monoclonal Antibody(3D6), 50ul Nucleic Acid Isolation & Purification MOK was found to be

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ATG7 mouse Monoclonal Antibody(3D6), 50ul Nucleic Acid Isolation & Purification MOK was found to beThis gene encodes an E1 like activating enzyme that is essential for autophagy and cytoplasmic to vacuole transport. The encoded protein is also thought to modulate p53 dependent cell cycle pathways during prolonged metabolic stress. It has been associated with multiple functions, including axon membrane trafficking, axonal homeostasis, mitophagy, adipose differentiation, and hematopoietic stem cell maintenance. Alternative splicing results in

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Description

MOK was found to be regulated by caudal type transcription factor 2 (Cdx2) protein

This gene encodes a member of the paired box (PAX) family of transcription factors

This protein can self-associate through the N-terminal domain allowing it to bind to multivalent saccharide ligands

The gene encoding this enzyme functions as the target for several anticancer agents and a variety of mutations in this gene have been associated with the development of drug resistance

EBFP can be used as protein "tags" to study the sub-cellular localization of proteins and/or their translocation upon stimulation or as markers for transfection in transient and stable expression systems

ATG7 mouse Monoclonal Antibody(3D6), 50ul Nucleic Acid Isolation & Purification MOK was found to beThis gene encodes an E1 like activating enzyme that is essential for autophagy and cytoplasmic to vacuole transport. The encoded protein is also thought to modulate p53 dependent cell cycle pathways during prolonged metabolic stress. It has been associated with multiple functions, including axon membrane trafficking, axonal homeostasis, mitophagy, adipose differentiation, and hematopoietic stem cell maintenance. Alternative splicing results in

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