ScRNA‐seq links dental fibroblasts heterogeneity with mechanoresponsiveness

Author:

Xu Hongyuan12345,Dai Qinggang23456,Wang Xinyu12345,Jin Anting12345,Yang Yiling12345,Huang Xiangru12345,Wang Xijun12345,Gao Xin12345,Sun Siyuan12345,Liu Yuanqi12345,Zhu Yanfei12345,Shen Steve GF.13457,Bian Qian12345,Jiang Lingyong12345

Affiliation:

1. Department of Oral and Cranio‐maxillofacial Surgery, Shanghai Ninth People's Hospital Shanghai Jiao Tong University School of Medicine Shanghai China

2. College of Stomatology Shanghai Jiao Tong University Shanghai China

3. National Center for Stomatology Shanghai China

4. National Clinical Research Center for Oral Diseases Shanghai China

5. Shanghai Key Laboratory of Stomatology Shanghai China

6. The 2nd Dental Center, Ninth People's Hospital, Shanghai Ninth People's Hospital Shanghai Jiao Tong University School of Medicine Shanghai China

7. College of Stomatology Shanghai Jiao Tong University School Shanghai China

Abstract

AbstractBackground and objectivePeriodontal ligament (PDL) and dental pulp (DP) share a common origin but have distinct biological and mechanical functions. To what extent the mechanoresponsive property of PDL can be attributed to its unique transcriptional profiles of cellular heterogeneity is unclear. This study aims to decipher cellular heterogeneity and distinct mechanoresponsive characteristics of odontogenic soft tissues and their underlying molecular mechanisms.Materials and MethodsA single‐cell comparison of digested human periodontal ligament (PDL) and dental pulp (DP) was performed using scRNA‐seq. An in vitro loading model was constructed to measure mechanoresponsive ability. Dual‐luciferase assay, overexpression, and shRNA knockdown were used to investigate the molecular mechanism.ResultsOur results demonstrate striking fibroblast heterogeneity across and within human PDL and DP. We demonstrated that a tissue‐specific subset of fibroblasts existed in PDL exhibiting high expression of mechanoresponsive extracellular matrix (ECM) genes, which was verified by an in vitro loading model. ScRNA‐seq analysis indicated a particularly enriched regulator in PDL‐specific fibroblast subtype, Jun Dimerization Protein 2 (JDP2). Overexpression and knockdown of JDP2 extensively regulated the downstream mechanoresponsive ECM genes in human PDL cells. The force loading model demonstrated that JDP2 responded to tension and that knockdown of JDP2 effectively inhibited the mechanical force–induced ECM remodeling.ConclusionsOur study constructed the PDL and DP ScRNA‐seq atlas to demonstrate PDL and DP fibroblast cellular heterogeneity and identify a PDL‐specific mechanoresponsive fibroblast subtype and its underlying mechanism.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Shanghai

Program of Shanghai Academic Research Leader

Publisher

Wiley

Subject

Periodontics

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