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Serendipitous alkylation of a Plk1 ligand uncovers a new binding channel

In the current work, unanticipated synthetic byproducts were obtained arising from alkylation of the δ(1) nitrogen (N3) of the histidine imidazole ring of the polo-like kinase-1 (Plk1) polo-box domain (PBD)-binding peptide PLHSpT. For the highest affinity byproduct, bearing a C(6)H(5)(CH(2))(8)– gro...

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Autores principales: Liu, Fa, Park, Jung-Eun, Qian, Wen-Jian, Lim, Dan, Gräber, Martin, Berg, Thorsten, Yaffe, Michael B., Lee, Kyung S., Burke, Terrence R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3158281/
https://www.ncbi.nlm.nih.gov/pubmed/21765407
http://dx.doi.org/10.1038/nchembio.614
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author Liu, Fa
Park, Jung-Eun
Qian, Wen-Jian
Lim, Dan
Gräber, Martin
Berg, Thorsten
Yaffe, Michael B.
Lee, Kyung S.
Burke, Terrence R.
author_facet Liu, Fa
Park, Jung-Eun
Qian, Wen-Jian
Lim, Dan
Gräber, Martin
Berg, Thorsten
Yaffe, Michael B.
Lee, Kyung S.
Burke, Terrence R.
author_sort Liu, Fa
collection PubMed
description In the current work, unanticipated synthetic byproducts were obtained arising from alkylation of the δ(1) nitrogen (N3) of the histidine imidazole ring of the polo-like kinase-1 (Plk1) polo-box domain (PBD)-binding peptide PLHSpT. For the highest affinity byproduct, bearing a C(6)H(5)(CH(2))(8)– group, a Plk1 PBD co-crystal structure revealed a new binding channel that had previously been occluded. An N-terminal PEGylated version of this peptide containing a hydrolytically-stable phosphothreonyl residue (pT) bound to the Plk1 PBD with affinity equal to the non-PEGylated parent, yet it exhibited significantly less interaction with the PBDs of the two closely-related Plk2 or Plk3. Treatment of cultured cells with this PEGylated peptide resulted in Plk1 delocalization from centrosomes and kinetochores, and chromosome misalignment that effectively induced mitotic block and apoptotic cell death. This work provides new insights that may advance efforts to develop Plk1 PBD-binding inhibitors as potential Plk1-specific anticancer therapeutic agents.
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spelling pubmed-31582812012-03-01 Serendipitous alkylation of a Plk1 ligand uncovers a new binding channel Liu, Fa Park, Jung-Eun Qian, Wen-Jian Lim, Dan Gräber, Martin Berg, Thorsten Yaffe, Michael B. Lee, Kyung S. Burke, Terrence R. Nat Chem Biol Article In the current work, unanticipated synthetic byproducts were obtained arising from alkylation of the δ(1) nitrogen (N3) of the histidine imidazole ring of the polo-like kinase-1 (Plk1) polo-box domain (PBD)-binding peptide PLHSpT. For the highest affinity byproduct, bearing a C(6)H(5)(CH(2))(8)– group, a Plk1 PBD co-crystal structure revealed a new binding channel that had previously been occluded. An N-terminal PEGylated version of this peptide containing a hydrolytically-stable phosphothreonyl residue (pT) bound to the Plk1 PBD with affinity equal to the non-PEGylated parent, yet it exhibited significantly less interaction with the PBDs of the two closely-related Plk2 or Plk3. Treatment of cultured cells with this PEGylated peptide resulted in Plk1 delocalization from centrosomes and kinetochores, and chromosome misalignment that effectively induced mitotic block and apoptotic cell death. This work provides new insights that may advance efforts to develop Plk1 PBD-binding inhibitors as potential Plk1-specific anticancer therapeutic agents. 2011-07-17 /pmc/articles/PMC3158281/ /pubmed/21765407 http://dx.doi.org/10.1038/nchembio.614 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Liu, Fa
Park, Jung-Eun
Qian, Wen-Jian
Lim, Dan
Gräber, Martin
Berg, Thorsten
Yaffe, Michael B.
Lee, Kyung S.
Burke, Terrence R.
Serendipitous alkylation of a Plk1 ligand uncovers a new binding channel
title Serendipitous alkylation of a Plk1 ligand uncovers a new binding channel
title_full Serendipitous alkylation of a Plk1 ligand uncovers a new binding channel
title_fullStr Serendipitous alkylation of a Plk1 ligand uncovers a new binding channel
title_full_unstemmed Serendipitous alkylation of a Plk1 ligand uncovers a new binding channel
title_short Serendipitous alkylation of a Plk1 ligand uncovers a new binding channel
title_sort serendipitous alkylation of a plk1 ligand uncovers a new binding channel
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3158281/
https://www.ncbi.nlm.nih.gov/pubmed/21765407
http://dx.doi.org/10.1038/nchembio.614
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