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https://www.sciencedirect.com/topics/biochemistry-genetics-and-molecular-biology/antennapedia
In the author's experience, using the protocol shown in Table II to deliver an Antennapedia-Rac1 inhibitory peptide, changes in neuronal morphology consistent with the inactivation of Rac1 occur within 30–40 min of treatment (Jurney et al., 2002).For experiments using the Antennapedia-Rac1 inhibitory peptide to investigate the role of Rac1 signaling in mediating the effects of negative axon ...
https://www.anaspec.com/products/product.asp?id=32204
Peptides , Cell Permeable Peptides (CPP) , Drug Delivery Peptides , Antennapedia Peptide, acid; This is a 16 amino acid peptide corresponding to the region within the Drosophila Antennapedia DNA binding domain that is mapped to be responsible for cellular internalization. This peptide is …
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1576229/
Aug 29, 2005 · Antennapedia has been widely used for the delivery of short peptides that have been utilised to inhibit protein–protein and protein–substrate interactions in a variety of intracellular signalling pathways (Lindsay, 2002). However, since there has been no systematic attempt to determine whether antennapedia is the optimal CPP sequence, we undertook studies to compare peptide delivery mediated by antennapedia …Author: Simon W Jones, Richard Christison, Ken Bundell, Catherine J Voyce, Sarah M V Brockbank, Peter Newham...
https://www.anaspec.com/products/product.asp?id=32205
Peptides , Cell Permeable Peptides (CPP) , Drug Delivery Peptides , Cys(Npys) Antennapedia Peptide, amide; This is the 16 amino acid region of Antennapedia peptide (Penetratin) synthesized with an activated cysteine residue C(Npys), wherein Npys is 3-Nitro-2-pyridinesulfenyl group is used for activating S of cysteine and for rapid reaction when a thiol group is introduced.
https://www.anaspec.com/products/product.asp?id=50861
Peptides , Cell Permeable Peptides (CPP) , Drug Delivery Peptides , Antennapedia Peptide, FAM-labeled; This is a 16 amino acid peptide corresponding to the region within the Drosophila Antennapedia DNA binding domain that is mapped to be responsible for cellular internalization.
https://www.sciencedirect.com/science/article/pii/S1471489202001996
Both antennapedia and TAT have been used in peptide delivery and have been effectively employed to attenuate protein–protein and enzyme–substrate interactions involved in growth factor, cytokine and integrin signalling, apoptosis, and cell division (Table 1; ). Examination of the literature shows that, compared with PTD–protein conjugates, substantially greater concentrations of PTD–peptide …Author: Mark A Lindsay
https://www.medchemexpress.com/Antennapedia_Peptide.html
Antennapedia Peptide is a 16 amino acid peptide, originally derived from the 60 amino acid long homeodomain of the Drosophila transcription factor Antennapedia and is a member of the family of Cell-penetrating peptides. - Mechanism of Action & Protocol.
https://www.genscript.com/peptide/RP20422-Antennapedia_Peptide_acid.html
This peptide is the homeodomain of the Drosophila homeoprotein Antennapaedia (residues 43-58, commonly named penetratin, RQIKIWFQNRRMKWKK),provides novel insights into the fundamental mechanisms of translocation across biological membranes.5/5(2)
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC140524/
Jan 15, 2003 · Cellular uptake of Antennapedia Penetratin peptides is a two-step process in which phase transfer precedes a tryptophan-dependent translocation. Geneviève Dom, Chloë Shaw-Jackson, ... The second step should involve membrane destabilization and further intracellular delivery, for which the W6 residue seems to play a critical role.Author: Geneviève Dom, Chloë Shaw-Jackson, Christelle Matis, Olivier Bouffioux, Jacques J.J. Picard, Alain P...
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3896395/
Jan 20, 2014 · Cell-Penetrating Peptide-Mediated Delivery of TALEN Proteins via Bioconjugation for Genome Engineering. ... Chassaing G, Prochiantz A (1994) The third helix of the Antennapedia homeodomain translocates through biological membranes. J Biol Chem 269: 10444–10450 ...Author: Jia Liu, Thomas Gaj, James T. Patterson, Shannon J. Sirk, Carlos F. Barbas
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