The Antiaging Gene Klotho Regulates Proliferation and Differentiation of Adipose-Derived Stem Cells

被引:56
作者
Fan, Jun [1 ]
Sun, Zhongjie [1 ]
机构
[1] Univ Oklahoma, Hlth Sci Ctr, Coll Med, Dept Physiol, BMSB 662A,Box 26901,940 SL Young Blvd, Oklahoma City, OK 73126 USA
关键词
Adipose stem cell; Adipogenic differentiation; Osteogenic differentiation; Myofibroblastic differentiation; TGF beta 1; Cell proliferation; TGF-BETA RECEPTOR; ADIPOCYTE DIFFERENTIATION; HORMONE KLOTHO; PROTEIN; MICE; MECHANISMS; PLASTICITY; TISSUE; SMAD3;
D O I
10.1002/stem.2305
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Klotho was originally discovered as an aging-suppressor gene. The purpose of this study was to investigate whether secreted Klotho (SKL) affects the proliferation and differentiation of adipose-derived stem cells (ADSCs). RT-PCR and Western blot analysis showed that short-form Klotho was expressed in mouse ADSCs. The Klotho gene mutation KL(-/-) significantly decreased proliferation of ADSCs and expression of pluripotent transcription factors (Nanog, Sox-2, and Oct-4) in mice. The adipogenic differentiation of ADSCs was also decreased in KL(-/-) mice. Incubation with Klotho-deficient medium decreased ADSC proliferation, pluripotent transcription factor levels, and adipogenic differentiation, which is similar to what was found in KL(-/-) mice. These results indicate that Klotho deficiency suppresses ADSC proliferation and differentiation. Interestingly, treatment with recombinant SKL protein rescued the Klotho deficiency-induced impairment in ADSC proliferation and adipogenic differentiation. SKL also regulated ADSCs' differentiation to other cell lineages (osteoblasts, myofibroblasts), indicating that SKL maintains stemness of ADSCs. It is intriguing that overexpression of SKL significantly increased PPAR-gamma expression and lipid formation in ADSCs following adipogenic induction, indicating enhanced adipogenic differentiation. Overexpression of SKL inhibited expression of TGF beta 1 and its downstream signaling mediator Smad2/3. This study demonstrates, for the first time, that SKL is essential to the maintenance of normal proliferation and differentiation in ADSCs. Klotho regulates adipogenic differentiation in ADSCs, likely via inhibition of TGF beta 1 and activation of PPAR-gamma.
引用
收藏
页码:1615 / 1625
页数:11
相关论文
共 50 条
[41]   Hypoxia enhances proliferation and stemness of human adipose-derived mesenchymal stem cells [J].
Fotia, Caterina ;
Massa, Annamaria ;
Boriani, Filippo ;
Baldini, Nicola ;
Granchi, Donatella .
CYTOTECHNOLOGY, 2015, 67 (06) :1073-1084
[42]   Adhesion and Proliferation of Human Adipose-Derived Stem Cells on Titania Nanotube Surfaces [J].
Cowden, Kari ;
Dias-Netipanyj, Marcela Ferreira ;
Popat, Ketul C. .
REGENERATIVE ENGINEERING AND TRANSLATIONAL MEDICINE, 2019, 5 (04) :435-445
[43]   Isolation, expansion, and differentiation of goat adipose-derived stem cells [J].
Ren, Yu ;
Wu, Haiqing ;
Zhou, Xueyuan ;
Wen, Jianxun ;
Jin, Muzi ;
Cang, Ming ;
Guo, Xudong ;
Wang, Qinglian ;
Liu, Dongjun ;
Ma, Yuzhen .
RESEARCH IN VETERINARY SCIENCE, 2012, 93 (01) :404-411
[44]   Differentiation of human adipose-derived stem cells into endometrial epithelial cells [J].
Fang, Yang ;
Zhang, Wan-Lin ;
Chen, Shu-Qiang ;
Sun, Hui-Jun ;
Lu, Jie ;
Xiao, Xi-Feng ;
Wang, Xiao-Hong .
REPRODUCTIVE AND DEVELOPMENTAL MEDICINE, 2020, 4 (03) :137-145
[45]   Icariin-mediated differentiation of mouse adipose-derived stem cells into cardiomyocytes [J].
Jin, Ming-shun ;
Shi, Sa ;
Zhang, Yi ;
Yan, Yan ;
Sun, Xiao-dong ;
Liu, Wei ;
Liu, Hui-wen .
MOLECULAR AND CELLULAR BIOCHEMISTRY, 2010, 344 (1-2) :1-9
[46]   Osteogenic differentiation potential of adipose-derived stem cells from ovariectomized mice [J].
Wang, Lei ;
Huang, Chenglong ;
Li, Qing ;
Xu, Xiaomei ;
Liu, Lin ;
Huang, Kui ;
Cai, Xiaoxiao ;
Xiao, Jingang .
CELL PROLIFERATION, 2017, 50 (02)
[47]   The isolation and differentiation of human adipose-derived stem cells using membrane filtration [J].
Wu, Cheng-Han ;
Lee, Fa-Kung ;
Kumar, Suresh ;
Ling, Qing-Dong ;
Chang, Yung ;
Chang, Yu ;
Wang, Han-Chow ;
Chen, Hui ;
Chen, Da-Chung ;
Hsu, Shih-Tien ;
Higuchi, Akon .
BIOMATERIALS, 2012, 33 (33) :8228-8239
[48]   PAMM Does not Affect Adipogenic Differentiation of Human Adipose-derived Stem Cells [J].
Zhang Ming-Meng ;
Wang Ying ;
Liang Jie ;
Wu Hong-Fu ;
Shi Yu-Cang ;
Wu Zhi-Yuan ;
Rao Min-La ;
Peng Jian-Yu ;
Jiang Zhi-Wen ;
Liu Xin-Guang ;
Sun Xue-Rong .
PROGRESS IN BIOCHEMISTRY AND BIOPHYSICS, 2022, 49 (07) :1305-1317
[49]   The role of lncRNA in the differentiation of adipose-derived stem cells: from functions to mechanism [J].
Wang, Yujing ;
Zhou, Yuxi ;
Li, Kun .
JOURNAL OF MOLECULAR MEDICINE-JMM, 2025, 103 (02) :125-135
[50]   The effect of gold nanoparticle size on osteogenic differentiation of adipose-derived stem cells [J].
Ko, Wan-Kyu ;
Heo, Dong Nyoung ;
Moon, Ho-Jin ;
Lee, Sang Jin ;
Bae, Min Soo ;
Lee, Jung Bok ;
Sun, In-Cheol ;
Jeon, Hoon Bong ;
Park, Hun Kuk ;
Kwon, Il Keun .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2015, 438 :68-76