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BBA Advances|September 19, 2024
N-glycosylation in Archaea - Expanding the process, components and roles of a universal post-translational modificationZlata Vershinin, Marianna Zaretsky, Jerry Eichler
Scientific Reports|October 14, 2020
PAK4 methylation by the methyltransferase SETD6 attenuates cell adhesionZlata Vershinin, Michal Feldman, Dan Levy
Carbohydrate Research|January 14, 2026
Only in Halobacterium salinarum: Sugar modifications unique to an archaeal N-linked glycanJerry Eichler, Zlata Vershinin, Marianna Zaretsky
Epigenetics & Chromatin|December 18, 2015
A continuous kinetic assay for protein and DNA methyltransferase enzymatic activitiesShai Duchin, Zlata Vershinin, Dan Levy, et al.
The Journal of Biological Chemistry|February 5, 2016
PAK4 Methylation by SETD6 Promotes the Activation of the Wnt/β-Catenin PathwayZlata Vershinin, Michal Feldman, Ayelet Chen, et al.
Biochimica Et Biophysica Acta|January 19, 2016
SETD6 is a negative regulator of oxidative stress responseAyelet Chen, Michal Feldman, Zlata Vershinin, et al.
Frontiers in Microbiology|December 20, 2021
Identifying Components of a Halobacterium salinarum N-Glycosylation PathwayZlata Vershinin, Marianna Zaretsky, Ziqiang Guan, et al.
FEMS Microbiology Letters|March 3, 2023
Agl28 and Agl29 are key components of a Halobacterium salinarum N-glycosylation pathwayZlata Vershinin, Marianna Zaretsky, Ziqiang Guan, et al.
Proceedings of the National Academy of Sciences of the United States of America|January 10, 2019
The methyltransferase SETD6 regulates Mitotic progression through PLK1 methylationMichal Feldman, Zlata Vershinin, Inna Goliand, et al.
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