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Home cDNA Clone TrueORF All Angpt4 ORF Clones

Angpt4 (NM_009641) Mouse cDNA ORF Clone

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Cat. No. Description Price Availability  
MG220485 Angpt4 (GFP-tagged) - Mouse angiopoietin 4 (Angpt4), (10ug), 10µg   
2-3 weeks
TA150041 2H8, Anti-tGFP monoclonal antibody, 100µl $248 In Stock
Cat. No. Description Price Availability
0 4 weeks
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TrueORF Data for MG220485
Vector: pCMV6-AC-GFP   Change vector? Tag: C-terminal TurboGFP
Sequence Data: ORF Nucleotide Sequence
Protein Sequence
ORF Size: 1527 bp
Predicted Protein MW: kDa
Restriction Sites: SgfI-RsrII     Cloning Scheme for this gene     Plasmid Map Plasmid Map
OTI Annotation: This clone was engineered to express the complete ORF with an expression tag. Expression varies depending on the nature of the gene.
OTI Disclaimer: The molecular sequence of this clone aligns with the gene accession number as a point of reference only. However, individual transcript sequences of the same gene can differ through naturally occurring variations (e.g. polymorphisms), each with its own valid existence. This clone is substantially in agreement with the reference, but a complete review of all prevailing variants is recommended prior to use. More info
Product Components: The ORF clone is ion-exchange column purified, transfection-ready dried plasmid DNA, and shipped with 2 vector sequencing primers.

Reference Data
RefSeq Explanation: NM_009641.1 , NP_033771
Synonyms: Agpt4; ANG-3; ANG-4; Ang3 RefSeq Size: 1530 RefSeq ORF: 1530
LocusID: 11602 Cytogenetic: 2 G3|2 74.83 cM
Gene Summary: This gene is a member of the angiopoietin family of secreted growth factors comprising Angiopoietins-1, -2, and -3, all of which bind the TEK Receptor Tyrosine Kinase. Angiopoietin/TEK Receptor Tyrosine Kinase signaling is involved in survival and migration of endothelial cells and regulates vascular remodeling and maintenance of vascular integrity. Angiopoietin/TEK Receptor Tyrosine Kinase signaling is also required for lymphangiogenesis. Family members bind TEK Receptor Tyrosine Kinase as multimeric clusters but their oligomerization properties differ from one another and this is thought to provide a mechanistic basis for their distinct physiologic roles. [provided by RefSeq, Jul 2016].


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