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Genome-wide screening for deubiquitinase subfamily identifies ubiquitin-specific protease 49 as a novel regulator of odontogenesisopen access

Authors
Kaushal, KaminiKim, Eun-JungTyagi, ApoorviKarapurkar, Janardhan KeshavHaq, SabaJung, Han-SungKim, Kye-SeongRamakrishna, Suresh
Issue Date
Sep-2022
Publisher
SPRINGERNATURE
Citation
CELL DEATH AND DIFFERENTIATION, v.29, no.9, pp.1689 - 1704
Indexed
SCIE
SCOPUS
Journal Title
CELL DEATH AND DIFFERENTIATION
Volume
29
Number
9
Start Page
1689
End Page
1704
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/191229
DOI
10.1038/s41418-022-00956-7
ISSN
1350-9047
Abstract
Proteins expressed by the paired box gene 9 (PAX9) and Msh Homeobox 1 (MSX1) are intimately involved in tooth development (odontogenesis). The regulation of PAX9 and MSX1 protein turnover by deubiquitinating enzymes (DUBs) plausibly maintain the required levels of PAX9 and MSX1 during odontogenesis. Herein, we used a loss-of-function CRISPR-Cas9-mediated DUB KO library kit to screen for DUBs that regulate PAX9 and MSX1 protein levels. We identify and demonstrate that USP49 interacts with and deubiquitinates PAX9 and MSX1, thereby extending their protein half-lives. On the other hand, the loss of USP49 reduces the levels of PAX9 and MSX1 proteins, which causes transient retardation of odontogenic differentiation in human dental pulp stem cells and delays the differentiation of human pluripotent stem cells into the neural crest cell lineage. USP49 depletion produced several morphological defects during tooth development, such as reduced dentin growth with shrunken enamel space, and abnormal enamel formation including irregular mineralization. In sum, our results suggest that deubiquitination of PAX9 and MSX1 by USP49 stabilizes their protein levels to facilitate successful odontogenesis.
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GRADUATE SCHOOL OF BIOMEDICAL SCIENCE AND ENGINEERING (DEPARTMENT OF BIOMEDICAL SCIENCE)
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