An endoplasmic reticulum stress regulator, Tmbim6, modulates secretory stage of mice molar

To understand the role of endoplasmic reticulum (ER)‐stress in mice molar development, we studied Tmbim6 that antagonizes the unfolded protein response, using Tmbim6 knockout (KO) mice and in vitro organ cultivation with knocking down using small interfering RNA. During molar development, Tmbim6 is...

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Veröffentlicht in:Journal of cellular physiology 2019-11, Vol.234 (11), p.20354-20365
Hauptverfasser: Aryal, Yam Prasad, Neupane, Sanjiv, Adhikari, Nirpesh, An, Chang‐Hyeon, Ha, Jung‐Hong, Kwon, Tae‐Yub, Yamamoto, Hitoshi, Jung, Jae‐Kwang, Park, Eui‐Kyun, Kim, Ji‐Youn, Cho, Sung‐Won, Sohn, Wern‐Joo, Lee, Youngkyun, Chae, Han‐Jung, Kim, Hyung‐Ryong, Kim, Jae‐Young
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Sprache:eng
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Zusammenfassung:To understand the role of endoplasmic reticulum (ER)‐stress in mice molar development, we studied Tmbim6 that antagonizes the unfolded protein response, using Tmbim6 knockout (KO) mice and in vitro organ cultivation with knocking down using small interfering RNA. During molar development, Tmbim6 is expressed in developing tooth at E14–E16, postnatal0 (PN0), and PN6. Mineral content in Tmbim6 KO enamel was reduced while dentin was slightly increased revealing ultrastructural changes in pattern formation of both enamel and dentin. Moreover, odontoblast differentiation was altered with increased Dspp expression at PN0 followed by altered AMELX localizations at PN5. These results were confirmed by in vitro organ cultivation and showed altered Bmp signaling, proliferation, and actin rearrangement in the presumptive ameloblast and odontoblasts that followed the altered expression of differentiation and ER stress‐related signaling molecules at E16.5. Overall, ER stress modulated by Tmbim6 would play important roles in patterned dental hard tissue formation in mice molar within a limited period of development. Tmbim6 is involved in regulating endoplasmic reticulum (ER)‐stress. It plays an important role in the formation of patterned dental hard tissue in mice molar via modulation of ER stress in developing tooth.
ISSN:0021-9541
1097-4652
DOI:10.1002/jcp.28635