Novel Macrocyclic Peptidomimetics Targeting the Polo-Box Domain of Polo-Like Kinase 1

Authors
Ryu, SeongShickPark, Jung-EunHam, Young JinLim, Daniel C.Kwiatkowski, Nicholas P.Kim, Do-HeeBhunia, DebabrataKim, Nam DooYaffe, Michael B.Son, WoolimKim, NamkyoungChoi, Tae-IkSwain, PuspanjaliKim, Cheol-HeeLee, Jin-YoungGray, Nathanael S.Lee, Kyung S.Sim, Tae Bo
Issue Date
2022-02
Publisher
AMER CHEMICAL SOC
Citation
JOURNAL OF MEDICINAL CHEMISTRY, v.65, no.3, pp.1915 - 1932
Abstract
The polo-box domain (PBD) of Plk1 is a promising target for cancer therapeutics. We designed and synthesized novel phosphorylated macrocyclic peptidomimetics targeting PBD based on acyclic phosphopeptide PMQSpTPL. The inhibitory activities of 16e on Plk1-PBD is >30-fold higher than those of PMQSpTPL. Both 16a and 16e possess excellent selectivity for Plk1-PBD over Plk2/3-PBD. Analysis of the cocrystal structure of Plk1-PBD in complex with 16a reveals that the 3-(trifluoromethyl)benzoyl group in 16a interacts with Arg516 through a pi-stacking interaction. This pi-stacking interaction, which has not been reported previously, provides insight into the design of novel and potent Plk1-PBD inhibitors. Furthermore, 16h, a PEGlyated macrocyclic phosphopeptide derivative, induces Plk1 delocalization and mitotic failure in HeLa cells. Also, the number of phospho-H3-positive cells in a zebrafish embryo increases in proportion to the amount of 16a. Collectively, the novel macrocyclic peptidomimetics should serve as valuable templates for the design of potent and novel Plk1-PBD inhibitors.
Keywords
FLUORESCENCE POLARIZATION; INHIBITORS; PLK1; PHOSPHOPEPTIDES; IDENTIFICATION; DERIVATIVES; ALKYLATION; POLO-LIKE-KINASE-1; PHOSPHORYLATION; RECRUITMENT
ISSN
0022-2623
URI
https://pubs.kist.re.kr/handle/201004/115666
DOI
10.1021/acs.jmedchem.1c01359
Appears in Collections:
KIST Article > 2022
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