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64


Atsttrin Promotes Cartilage Repair Primarily Through TNFR2-Akt Pathway

Wei, Jianlu; Wang, Kaidi; Hettinghouse, Aubryanna; Liu, Chuanju
Background/UNASSIGNED:Cartilage defects account for substantial economic and humanistic burdens and pose a significant clinical problem. The efficacy of clinical approaches to cartilage repair is often inadequate, in part, owing to the restricted proliferative capacity of chondrocytes. Molecules have the capacity to promote the differentiation of multipotent mesenchymal stem cells into chondrocytes and may also gain the ability to repair the damaged cartilage. Objective/UNASSIGNED:This study aimed to investigate the role of Atsttrin (progranulin-derived engineered protein) in cartilage repair as well as the signaling pathway involved. Methods/UNASSIGNED:. Real-time polymerase chain reaction and Western blot analysis were used to monitor the effect of Atsttrin on the transcriptional and protein levels, respectively, of key anabolic and catabolic signaling molecules. Results/UNASSIGNED:In addition, Atsttrin-mediated cartilage repair occurred primarily through tumor necrosis factor receptor 2-initiated Akt signaling and downstream JunB transcription factor. Conclusion/UNASSIGNED:Atsttrin might serve as a promising therapeutic modality for cartilage regeneration.
PMCID:7658268
PMID: 33195216
ISSN: 2296-634x
CID: 4676032

Focal adhesion proteins Pinch1 and Pinch2 regulate bone homeostasis in mice

Wang, Yishu; Yan, Qinnan; Zhao, Yiran; Liu, Xin; Lin, Simin; Zhang, Peijun; Ma, Liting; Lai, Yumei; Bai, Xiaochun; Liu, Chuanju; Wu, Chuanyue; Feng, Jian Q; Chen, Di; Cao, Huiling; Xiao, Guozhi
Mammalian focal adhesion proteins Pinch1 and Pinch2 regulate integrin activation and cell-extracellular matrix adhesion and migration. Here, we show that deleting Pinch1 in osteocytes and mature osteoblasts using the 10-kb mouse Dmp1-Cre and Pinch2 globally (double KO; dKO) results in severe osteopenia throughout life, while ablating either gene does not cause bone loss, suggesting a functional redundancy of both factors in bone. Pinch deletion in osteocytes and mature osteoblasts generates signals that inhibit osteoblast and bone formation. Pinch-deficient osteocytes and conditioned media from dKO bone slice cultures contain abundant sclerostin protein and potently suppress osteoblast differentiation in primary BM stromal cells (BMSC) and calvarial cultures. Pinch deletion increases adiposity in the BM cavity. Primary dKO BMSC cultures display decreased osteoblastic but enhanced adipogenic, differentiation capacity. Pinch loss decreases expression of integrin β3, integrin-linked kinase (ILK), and α-parvin and increases that of active caspase-3 and -8 in osteocytes. Pinch loss increases osteocyte apoptosis in vitro and in bone. Pinch loss upregulates expression of both Rankl and Opg in the cortical bone and does not increase osteoclast formation and bone resorption. Finally, Pinch ablation exacerbates hindlimb unloading-induced bone loss and impairs active ulna loading-stimulated bone formation. Thus, we establish a critical role of Pinch in control of bone homeostasis.
PMID: 31723057
ISSN: 2379-3708
CID: 4186932

Lipoatrophy and metabolic disturbance in mice with adipose-specific deletion of kindlin-2

Gao, Huanqing; Guo, Yuxi; Yan, Qinnan; Yang, Wei; Li, Ruxuan; Lin, Simin; Bai, Xiaochun; Liu, Chuanju; Chen, Di; Cao, Huiling; Xiao, Guozhi
Kindlin-2 regulates integrin-mediated cell adhesion to and migration on the extracellular matrix. Our recent studies demonstrate important roles of kindlin-2 in regulation of mesenchymal stem cell differentiation and skeletal development. In this study, we generated adipose tissue-specific conditional knockout of kindlin-2 in mice by using Adipoq-Cre BAC-transgenic mice. The results showed that deleting kindlin-2 expression in adipocytes in mice caused a severe lipodystrophy with drastically reduced adipose tissue mass. Kindlin-2 ablation elevated the blood levels of nonesterified fatty acids and triglycerides, resulting in massive fatty livers in the mutant mice fed with high-fat diet (HFD). Furthermore, HFD-fed mutant mice displayed type II diabetes-like phenotypes, including elevated levels of fasting blood glucose, glucose intolerance, and peripheral insulin resistance. Kindlin-2 loss dramatically reduced the expression levels of multiple key factors, including PPARγ, mTOR, AKT, and β-catenin proteins, and suppressed adipocyte gene expression and differentiation. Finally, kindlin-2 loss drastically reduced leptin production and caused a high bone mass phenotype. Collectively, these studies establish a critical role of kindlin-2 in control of adipogenesis and lipid metabolism as well as bone homeostasis.
PMID: 31292295
ISSN: 2379-3708
CID: 3976692

DAB, An FDA-approved Drug, Protects against Osteoarthritis through BIG2 Mediated Regulation of TNF alpha and IL-1 beta Signaling [Meeting Abstract]

Fu, Wenyu; Wang, Shuya; Liu, Ronghan; Song, Wenhao; Liu, Chuanju
ISI:000508356600046
ISSN: 0884-0431
CID: 4344832

Osteocytic Kindlin-2 regulates bone mass accrual and maintenance and mediates skeletal response to mechanical loading and PTH anabolism [Meeting Abstract]

Cao, Huiling; Yan, Qinnan; Wang, Dong; Lai, Yumei; Lin, Simin; Lei, Yimin; Ma, Liting; Guo, Yuxi; Wang, Yishu; Wang, Yilin; Gao, Huanqing; Bai, Xiaochun; Liu, Chuanju; Feng, Jian Q.; Wu, Chuanyue; Chen, Di; Xiao, Guozhi
ISI:000450475400095
ISSN: 0884-0431
CID: 3535982

Novel TNFR2 Signaling in Osteoarthritis [Meeting Abstract]

Fu, Wenyu; Yi, Young-Su; Mundra, Jyoti Joshi; Hettinghouse, Aubryanna; Liu, Chuanju
ISI:000450475401206
ISSN: 0884-0431
CID: 3536942

Developing protein engineered injectable hydrogels for post-traumatic osteoarthritis [Meeting Abstract]

Katyal, Priya; Meleties, Michael; Tian, Qingyun; Liu, Chuanju; Montclare, Jin
ISI:000447609105463
ISSN: 0065-7727
CID: 3408052

RNA-Seq analysis of interferon inducible p204-mediated network in anti-tumor immunity

Jian, Jinlong; Wei, Wei; Yin, Guowei; Hettinghouse, Aubryanna; Liu, Chuanju; Shi, Yongxiang
p204, a murine member of the interferon-inducible p200 protein family, and its human analogue, IFI16, have been shown to function as tumor suppressors in vitro, but the molecular events involved, in particular in vivo, remain unclear. Herein we induced the Lewis Lung carcinoma (LLC) murine model of human lung cancer in p204 null mice (KO) and their control littermates (WT). We compared the transcriptome in spleen from WT and p204 KO mice using a high-throughput RNA-sequencing array. A total 30.02 Gb of clean data were obtained, and overall Q30% was greater than 90.54%. More than 75% of clean data from 12 transcriptome samples were mapped to exons. The results showed that only 11 genes exhibited altered expression in untreated p204 KO mice relative to untreated WT mice, while 393 altered genes were identified in tumor-bearing p204 KO mice when compared with tumor-bearing WT mice. Further differentially expressed gene cluster and gene ontology consortium classification revealed that numerous cytokines and their receptors, chemoattractant molecules, and adhesion molecules were significantly induced in p204 KO mice. This study provides novel insights to the p204 network in anti-tumor immune response and also presents a foundation for future work concerning p204-mediated gene expressions and pathways.
PMCID:5915582
PMID: 29691417
ISSN: 2045-2322
CID: 3052702

Progranulin stabilizes hexosaminidase A and is therapeutic in Tay-Sachs disease [Meeting Abstract]

Jian, Jinlong; Chen, Yuehong; Liu, Chuanju
ISI:000424963800167
ISSN: 1096-7192
CID: 2964402

Chitinase-3-like protein 1: a novel biomarker for Gaucher disease [Meeting Abstract]

Jian, Jinlong; Chen, Yuehong; Liberti, Rossella; Fu, Wenyu; Hu, Wenhuo; Saunders-Pullman, Rachel; Pastores, Gregory; Chen, Ying; Liu, Chuanju
ISI:000424963800166
ISSN: 1096-7192
CID: 2964412