Identification of regulatory mRNA and microRNA for differentiation into cementoblasts and periodontal ligament cells

被引:11
作者
Iwata, Tomoyuki [1 ]
Mizuno, Noriyoshi [1 ]
Nagahara, Takayoshi [1 ]
Kaneda-Ikeda, Eri [1 ]
Kajiya, Mikihito [1 ]
Kitagawa, Masae [2 ,3 ]
Takeda, Katsuhiro [1 ,4 ]
Yoshioka, Minami [1 ]
Yagi, Ryoichi [1 ]
Takata, Takashi [2 ,5 ]
Kurihara, Hidemi [1 ]
机构
[1] Hiroshima Univ, Dept Periodontal Med, Grad Sch Biomed & Hlth Sci, Hiroshima 7348553, Japan
[2] Hiroshima Univ, Dept Oral & Maxiliofacial Pathobiol, Grad Sch Biomed & Hlth Sci, Hiroshima, Japan
[3] Hiroshima Univ Hosp, Ctr Oral Clin Examinat, Hiroshima, Japan
[4] Hiroshima Univ, Dept Biol Endodont, Grad Sch Biomed & Hlth Sci, Hiroshima, Japan
[5] Tokuyama Univ, Tokuyama, Yamaguchi, Japan
基金
日本学术振兴会;
关键词
cementogenesis; mesenchymal stem cells; periodontal ligament cells; periodontal regeneration; MESENCHYMAL STEM-CELLS; BONE-MARROW; OSTEOGENIC DIFFERENTIATION; OSTEOBLASTIC DIFFERENTIATION; CEMENTUM PROTEINS; EXPRESSION; NEUROTROPHINS; REGENERATION; MICROARRAY; PREDICTION;
D O I
10.1111/jre.12794
中图分类号
R78 [口腔科学];
学科分类号
1003 ;
摘要
Objective Periodontitis causes periodontal tissue destruction and results in physiological tooth dysfunction. Therefore, periodontal regeneration is ideal therapy for periodontitis. Mesenchymal stem cells (MSCs) are useful for periodontal regenerative therapy as they can differentiate into periodontal cells; however, the underlying regulatory mechanism is unclear. In this study, we attempted to identify regulatory genes involved in periodontal cell differentiation and clarify the differentiation mechanism for effective periodontal regenerative therapy. Background The cementum and periodontal ligament play important roles in physiological tooth function. Therefore, cementum and periodontal ligament regeneration are critical for periodontal regenerative therapy. Mesenchymal stem cell transplantation can be a common periodontal regenerative therapy because these cells have multipotency and self-renewal ability, which induces new cementum or periodontal ligament formation. Moreover, MSCs can differentiate into cementoblasts. Cementoblast- or periodontal ligament cell-specific proteins have been reported; however, it is unclear how these proteins are regulated. MicroRNA (miRNA) can also act as a key regulator of MSC function. Therefore, in this study, we identified regulatory genes involved in cementoblast or periodontal cell differentiation and commitment. Methods Human MSCs (hMSCs), cementoblasts (HCEM), and periodontal ligament cells (HPL cells) were cultured, and mRNA or miRNA expression was evaluated. Additionally, cementoblast-specific genes were overexpressed or suppressed in hMSCs and their expression levels were investigated. Results HCEM and HPL cells expressed characteristic genes, of which we focused on ets variant 1 (ETV1), miR-628-5p, and miR-383 because ETV1 is a differentiation-related transcription factor, miR-628-5p was the second-highest expressed gene in HCEM and lowest expressed gene in HPL cells, and miR-383 was the highest expressed gene in HCEM. miR-628-5p and miR-383 overexpression in hMSCs regulated ETV1 mRNA expression, and miR-383 overexpression downregulated miR-628-5p expression. Moreover, miR-383 suppression decreased miR-383 expression and enhanced ETV1 mRNA expression, but miR-383 suppression also decreased miR-628-5p. Furthermore, silencing of ETV1 expression in hMSCs regulated miR-628-5p and miR-383 expression. Concerning periodontal cell commitment, miR-628-5p, miR-383, and ETV1 regulated the expression of HCEM- or HPL cell-related genes by adjusting the expression of these miRNAs. Conclusion HCEM and HPL cells show characteristic mRNA and miRNA profiles. In particular, these cells have specific miR-383, miR-628-5p, and ETV1 expression patterns, and these genes interact with each other. Therefore, miR-383, miR-628-5p, and ETV1 are key genes involved in cementogenesis or HPL cell differentiation.
引用
收藏
页码:69 / 82
页数:14
相关论文
共 53 条
[1]   Messenger RNA expression of periostin and Twist transiently decrease by occlusal hypofunction in mouse periodontal ligament [J].
Afanador, E ;
Yokozeki, M ;
Oba, Y ;
Kitase, Y ;
Takahashi, T ;
Kudo, A ;
Moriyama, K .
ARCHIVES OF ORAL BIOLOGY, 2005, 50 (12) :1023-1031
[2]  
Alhezaimi K, 2009, INT J PERIODONT REST, V29, P425
[3]   Molecular cloning, expression and immunolocalization of a novel human cementum-derived protein (CP-23) [J].
Alvarez-Pérez, MA ;
Narayanan, S ;
Zeichner-David, M ;
Carmona, BR ;
Arzate, H .
BONE, 2006, 38 (03) :409-419
[4]   ISOLATION OF HUMAN TUMOR-CELLS THAT PRODUCE CEMENTUM PROTEINS IN CULTURE [J].
ARZATE, H ;
OLSON, SW ;
PAGE, RC ;
NARAYANAN, AS .
BONE AND MINERAL, 1992, 18 (01) :15-30
[5]   Gene profile in periodontal ligament cells and clones with enamel matrix proteins derivative [J].
Barkana, Idit ;
Alexopoulou, Eleni ;
Ziv, Shoshi ;
Jacob-Hirsch, Jasmin ;
Amariglio, Ninette ;
Pitaru, Sandu ;
Vardimon, Alexander D. ;
Nemcovsky, Carlos E. .
JOURNAL OF CLINICAL PERIODONTOLOGY, 2007, 34 (07) :599-609
[6]   Human Cementum Protein 1 induces expression of bone and cementum proteins by human gingival fibroblasts [J].
Carmona-Rodriguez, Bruno ;
Alvarez-Perez, Marco Antonio ;
Narayanan, A. Sampath ;
Zeichner-David, Margarita ;
Reyes-Gasga, Jose ;
Molina-Guarneros, Juan ;
Garcia-Hernandez, Ana Lilia ;
Suarez-Franco, Jose Luis ;
Chavarria, Ivet Gil ;
Villarreal-Ramirez, Eduardo ;
Arzate, Higinio .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2007, 358 (03) :763-769
[7]   miR-628-3p regulates osteoblast differentiation by targeting RUNX2: Possible role in atrophic non-union [J].
Chen, Hua ;
Ji, Xinran ;
She, Fei ;
Gao, Yuan ;
Tang, Peifu .
INTERNATIONAL JOURNAL OF MOLECULAR MEDICINE, 2017, 39 (02) :279-286
[8]   MicroRNA expression profile of human periodontal ligament cells under the influence of Porphyromonas gingivalis LPS [J].
Du, Anqing ;
Zhao, Sen ;
Wan, LingYun ;
Liu, TianTao ;
Peng, Zaoxia ;
Zhou, Ziyu ;
Liao, Zhengyu ;
Fang, Huan .
JOURNAL OF CELLULAR AND MOLECULAR MEDICINE, 2016, 20 (07) :1329-1338
[9]   MicroRNA-138 regulates osteogenic differentiation of human stromal (mesenchymal) stem cells in vivo [J].
Eskildsen, Tilde ;
Taipaleenmaki, Hanna ;
Stenvang, Jan ;
Abdallah, Basem M. ;
Ditzel, Nicholas ;
Nossent, Anne Yael ;
Bak, Mads ;
Kauppinen, Sakari ;
Kassem, Moustapha .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2011, 108 (15) :6139-6144
[10]   MicroRNA profiling reveals dysregulated microRNAs and their target gene regulatory networks in cemento-ossifying fibroma [J].
Fontes Pereira, Thais dos Santos ;
Ricieri Brito, Joao Artur ;
Sena Guimaraes, Andre Luiz ;
Gomes, Carolina Cavalieri ;
Tanos de Lacerda, Julio Cesar ;
de Castro, Wagner Henriques ;
Coimbra, Roney Santos ;
Diniz, Marina Goncalves ;
Gomez, Ricardo Santiago .
JOURNAL OF ORAL PATHOLOGY & MEDICINE, 2018, 47 (01) :78-85