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Ac-RHRK-NH2
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Ac-RHRK-NH2

Ref. 3D-PP44252

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Estimated delivery in United States, on Monday 28 Oct 2024

Product Information

Name:
Ac-RHRK-NH2
Synonyms:
  • Ac-Arg-His-Arg-Lys-amide
Description:

Peptide Ac-RHRK-NH2 is a Research Peptide with significant interest within the field academic and medical research. This peptide is available for purchase at Cymit Quimica in multiple sizes and with a specification of your choice. Recent citations using Ac-RHRK-NH2 include the following: Structural basis for the specific recognition of methylated histone H3 lysine 4 by the WD-40 protein WDR5 Z Han , L Guo, H Wang, Y Shen, XW Deng, J Chai - Molecular cell, 2006 - cell.comhttps://www.cell.com/fulltext/S1097-2765(06)00184-5 Platforms for delivery of macromolecules to sites of DNA double-strand break repair Z Cao, D Goyal, SE Meiler, Y Zhou - Artificial Cells , 2019 - Taylor & Francishttps://www.tandfonline.com/doi/abs/10.1080/21691401.2019.1622553 SET8 recognizes the sequence RHRK20VLRDN within the N terminus of histone H4 and mono-methylates lysine 20 Y Yin, C Liu, SN Tsai , B Zhou, SM Ngai - Journal of Biological , 2005 - ASBMBhttps://www.jbc.org/article/S0021-9258(20)79423-8/abstract Deconvoluting complex protein interaction networks through reductionist strategies in peptide biochemistry: Modern approaches and research questions V Lukinovic , KK Biggar - Comparative Biochemistry and Physiology Part B , 2021 - Elsevierhttps://www.sciencedirect.com/science/article/pii/S1096495921000555 Target Enabling Packages (TEPs) Lorem Ipsum is simply dummy text of the printing and typesetting industry. Lorem Ipsum has been the industry's standard SGC UNC - cloud205986.mywhc.cahttps://cloud205986.mywhc.ca/chemical-probes/jq1 Caenorhabditis elegans Dosage Compensation Regulates Histone H4 Chromatin State on X Chromosomes MB Wells, MJ Snyder, LM Custer - Molecular and cellular , 2012 - Taylor & Francishttps://www.tandfonline.com/doi/abs/10.1128/MCB.06546-11 The binding of Ni (II) and Cu (II) with the N-terminal tail of the histone H4 MA Zoroddu, M Peana , T Kowalik-Jankowska - Journal of the , 2002 - pubs.rsc.orghttps://pubs.rsc.org/en/content/articlehtml/2002/dt/b105128h High-Throughput Screening Identifies Ascorbyl Palmitate as a SIRT2 Deacetylase and Defatty-Acylase Inhibitor JY Hong , J Cassel, J Yang , H Lin , BP Weiser - ChemMedChem, 2021 - Wiley Online Libraryhttps://chemistry-europe.onlinelibrary.wiley.com/doi/abs/10.1002/cmdc.202100343 Effects of Dimerization on the Deacylase Activities of Human SIRT2 J Yang , NI Nicely, BP Weiser - Biochemistry, 2023 - ACS Publicationshttps://pubs.acs.org/doi/abs/10.1021/acs.biochem.3c00381 Cu (II)-histones interaction related to toxicity-carcinogenesis G Malandrinos , N Hadjiliadis - Coordination Chemistry Reviews, 2014 - Elsevierhttps://www.sciencedirect.com/science/article/pii/S0010854513002804 KMT9 monomethylates histone H4 lysine 12 and controls proliferation of prostate cancer cells E Metzger, S Wang, S Urban, D Willmann - Nature structural & , 2019 - nature.comhttps://www.nature.com/articles/s41594-019-0219-9 Human H4 tail stimulates HIV-1 integration through binding to the carboxy-terminal domain of integrase E Mauro, P Lesbats, D Lapaillerie - Nucleic Acids , 2019 - academic.oup.comhttps://academic.oup.com/nar/article-abstract/47/7/3607/5320379 In vivo destabilization of dynamic microtubules by HDAC6-mediated deacetylation A Matsuyama, T Shimazu, Y Sumida, A Saito - The EMBO , 2002 - embopress.orghttps://www.embopress.org/doi/full/10.1093/emboj/cdf682

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