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2.
Nat Commun ; 9(1): 2833, 2018 07 19.
Article in English | MEDLINE | ID: mdl-30026585

ABSTRACT

SP7/Osterix (OSX) is a master regulatory transcription factor that activates a variety of genes during differentiation of osteoblasts. However, the influence of post-translational modifications on the regulation of its transactivation activity is largely unknown. Here, we report that sirtuins, which are NAD(+)-dependent deacylases, regulate lysine deacylation-mediated transactivation of OSX. Germline Sirt7 knockout mice develop severe osteopenia characterized by decreased bone formation and an increase of osteoclasts. Similarly, osteoblast-specific Sirt7 knockout mice showed attenuated bone formation. Interaction of SIRT7 with OSX leads to the activation of transactivation by OSX without altering its protein expression. Deacylation of lysine (K) 368 in the C-terminal region of OSX by SIRT7 promote its N-terminal transactivation activity. In addition, SIRT7-mediated deacylation of K368 also facilitates depropionylation of OSX by SIRT1, thereby increasing OSX transactivation activity. In conclusion, our findings suggest that SIRT7 has a critical role in bone formation by regulating acylation of OSX.


Subject(s)
Bone Diseases, Metabolic/genetics , Lysine/metabolism , Osteoblasts/metabolism , Sirtuins/genetics , Sp7 Transcription Factor/genetics , Transcriptional Activation , Acylation , Animals , Bone Density , Bone Diseases, Metabolic/metabolism , Bone Diseases, Metabolic/pathology , Cell Differentiation , Cell Line , Female , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , Osteoblasts/pathology , Osteoclasts/metabolism , Osteoclasts/pathology , Osteogenesis/genetics , Signal Transduction , Sirtuins/deficiency , Sp7 Transcription Factor/metabolism
3.
Article in English | MEDLINE | ID: mdl-29402405

ABSTRACT

Sirtuins (SIRT1-7) are NAD+-dependent deacetylase/deacylases that regulate a wide variety of biological functions. Although the roles of sirtuins in cartilage homeostasis and cartilage diseases have been well studied, there is no information on the contribution of SIRT7 to cartilage homeostasis and osteoarthritis (OA) pathologies. Here, we demonstrate that Sirt7 knockout mice are resistant to the development of aging-associated OA and forced exercise-induced OA. Attenuation of Sirt7 in the murine chondrogenic cell line ATDC5 increased the deposition of a glycosaminoglycan-rich extracellular matrix and the mRNA expression of extracellular matrix components such as Col2a1 and Acan. Mechanistically, we found that SIRT7 suppressed the transcriptional activity of SOX9, which is an important transcription factor in chondrocytes, and that the enzymatic activity of SIRT7 was required for its function. Our results indicate that SIRT7 is a novel important regulator of cartilage homeostasis and OA development.

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