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Angiopoietin-like 8 governs osteoblast-adipocyte lineage commitment during skeletal aging
Yaming Guo, Zeqing Zhang, Junyu He, Peiqiong Luo, Zhihan Wang, Yurong Zhu, Xiaoyu Meng, Limeng Pan, Ranran Kan, Yuxi Xiang, Beibei Mao, Yi He, Siyi Wang, Yan Yang, Fengjing Guo, Hongbo You, Feng Li, Danpei Li, Yong Chen, Xuefeng Yu
Yaming Guo, Zeqing Zhang, Junyu He, Peiqiong Luo, Zhihan Wang, Yurong Zhu, Xiaoyu Meng, Limeng Pan, Ranran Kan, Yuxi Xiang, Beibei Mao, Yi He, Siyi Wang, Yan Yang, Fengjing Guo, Hongbo You, Feng Li, Danpei Li, Yong Chen, Xuefeng Yu
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Research Article Aging Endocrinology

Angiopoietin-like 8 governs osteoblast-adipocyte lineage commitment during skeletal aging

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Abstract

A distinguishing feature of older mesenchymal stem cells (MSCs) from bone marrow (BM) is the transition in their differentiation capabilities from osteoblasts to adipocytes. However, the mechanisms underlying these cellular events during the aging process remain unclear. We identified angiopoietin-like protein 8 (ANGPTL8), an adipokine implicated in lipid metabolism, that influenced the fate of MSCs in BM during skeletal aging. Our studies revealed that ANGPTL8 steered MSCs toward adipogenic differentiation, overshadowing osteoblastogenesis. Mice with overexpressed ANGPTL8 exhibited reduced bone mass and increased BM adiposity, while those with transgenic depletion of ANGPTL8 showed lowered bone loss and less accumulation of BM fat. ANGPTL8 influenced the BM niche of MSCs by inhibiting the Wnt/β-catenin signaling pathway. Partial inhibition of PPARγ rescued some aspects of the phenotype in MSCs with ANGPTL8 overexpression. Furthermore, treatment with an Angptl8 antisense oligonucleotide improved the phenotype of aging mice. Our research suggests that ANGPTL8 is a crucial regulator of senesence-related changes in the BM niche and the cell-fate switch of MSCs.

Authors

Yaming Guo, Zeqing Zhang, Junyu He, Peiqiong Luo, Zhihan Wang, Yurong Zhu, Xiaoyu Meng, Limeng Pan, Ranran Kan, Yuxi Xiang, Beibei Mao, Yi He, Siyi Wang, Yan Yang, Fengjing Guo, Hongbo You, Feng Li, Danpei Li, Yong Chen, Xuefeng Yu

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Figure 1

ANGPTL8 expression increases with age in BM during skeletal aging.

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ANGPTL8 expression increases with age in BM during skeletal aging.
(A) O...
(A) Oil Red O and H&E staining of human BM samples from individuals at different ages. Scale bars: 200 μm. (B) ANGPTL8 levels in BM supernatants (n = 14) from different individuals. (C) Bioinformatics analysis of single-cell RNA sequencing of BM cells expressing ANGPTL8 from old (24 months) WT male mice. (D) Age-associated ANGPTL8 mRNA expression in hBMMSCs (n = 33). (E and F) ANGPTL8 levels in BM supernatants (E) and serum (F) from 3-, 12-, and 24-month-old WT male mice (n = 6). (G–J) mRNA expression of Angptl8 (G), corresponding ANGPTL8 levels in supernatants (H), and Western blot analysis for ANGPTL8 (I and J) in 18-month-old male mice BMMSCs from different cell passages (n = 3). (K) Representative images showing immunofluorescent staining of ANGPTL8 (green) in passage 5 (P5) BMMSCs from 18-month-old male mice. Scale bar: 50 μm. (L) qRT-PCR analysis of the mRNA expression of Angptl8, Pparg, and Fabp4 during the differentiation of BMMSCs from 3-month-old WT male mice into adipocytes (n = 3). (M and N) mRNA expression of ANGPTL8 (M) and ANGPTL8 levels (N) in supernatants from hBMMSCs from different passages (n = 3). Data are mean ± SEM. *P < 0.05; **P < 0.01; ***P < 0.001; ****P < 0.0001 by 1-way ANOVA followed by Tukey’s multiple-comparison test.

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