E.B. Wondimu
Cornell University
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Publication
Featured researches published by E.B. Wondimu.
Methods of Molecular Biology | 2015
K.L. Culley; Cecilia L. Dragomir; Jun Chang; E.B. Wondimu; Jonathan M. Coico; Darren A. Plumb; Miguel Otero; Mary B. Goldring
The surgical model of destabilization of the medial meniscus (DMM) has become a gold standard for studying the onset and progression of posttraumatic osteoarthritis (OA). The DMM model mimics clinical meniscal injury, a known predisposing factor for the development of human OA, and permits the study of structural and biological changes over the course of the disease. In addition, when applied to genetically modified or engineered mouse models, this surgical procedure permits dissection of the relative contribution of a given gene to OA initiation and/or progression. This chapter describes the requirements for the surgical induction of OA in mouse models, and provides guidelines and tools for the subsequent histological, immunohistochemical, and molecular analyses. Methods for the assessment of the contributions of selected genes in genetically modified strains are also provided.
Connective Tissue Research | 2017
Miguel Otero; Haibing Peng; Karim El Hachem; K.L. Culley; E.B. Wondimu; Justin Quinn; Hiroshi Asahara; Kaneyuki Tsuchimochi; Ko Hashimoto; Mary B. Goldring
ABSTRACT Aim: We showed previously that E74-like factor 3 (ELF3) protein levels are increased in osteoarthritic (OA) cartilage, that ELF3 accounts for inflammatory cytokine-driven MMP13 gene expression, and that, upon induction by interleukin-1β, ELF3 binds to the COL2A1 promoter and suppresses its activity in chondrocytes. Here, we aimed to further investigate the mechanism/s by which ELF3 represses COL2A1 transcription in chondrocytes. Methods and Results: We report that ELF3 inhibits Sox9-driven COL2A1 promoter activity by interfering with the activator functions of CBP/300 and Sox9. Co-transfection of the pGL2B-COL2A1 (–577/+3428 bp) reporter construct with Sox9 and with Sox5 and/or Sox6 increased COL2A1 promoter activity, and ELF3 overexpression significantly reduced the promoter transactivation. Co-transfection of ELF3 with the pLuc 4x48 enhancer construct, containing the 89-bp COL2A1 promoter and lacking the previously defined ELF3 binding sites, decreased both basal and Sox9-driven promoter activity. Co-transfection of ELF3 with a Gal4 reporter construct also inhibited Gal4-Sox9-driven transactivation, suggesting that ELF3 directly interacts with Sox9. Using truncated Sox9 fragments, we found that ELF3 interacts directly with the HMG domain of Sox9. Importantly, overexpression of ELF3 significantly decreased Sox9/CBP-dependent HAT activity. Finally, we show evidence that increased ELF3 mRNA expression in OA chondrocytes correlates with hypermethylation of the proximal promoter, suggesting that ELF3 transcription is subjected to epigenetic control in OA disease. Conclusion: Our results highlight the contribution of ELF3 to transcriptional regulation of COL2A1 and its potential role in OA disease, and uncover epigenetic mechanisms at play in the regulation of ELF3 and its downstream targets in articular chondrocytes.
Scientific Reports | 2018
E.B. Wondimu; K.L. Culley; Justin Quinn; Jun Chang; Cecilia L. Dragomir; Darren A. Plumb; Mary B. Goldring; Miguel Otero
The E-74 like factor 3 (ELF3) is a transcription factor induced by inflammatory factors in various cell types, including chondrocytes. ELF3 levels are elevated in human cartilage from patients with osteoarthritis (OA), and ELF3 contributes to the IL-1β-induced expression of genes encoding Mmp13, Nos2, and Ptgs2/Cox2 in chondrocytes in vitro. Here, we investigated the contribution of ELF3 to cartilage degradation in vivo, using a mouse model of OA. To this end, we generated mouse strains with cartilage-specific Elf3 knockout (Col2Cre:Elf3f/f) and Comp-driven Tet-off-inducible Elf3 overexpression (TRE-Elf3:Comp-tTA). To evaluate the contribution of ELF3 to OA, we induced OA in 12-week-old Col2Cre:Elf3f/f and 6-month-old TRE-Elf3:Comp-tTA male mice using the destabilization of the medial meniscus (DMM) model. The chondrocyte-specific deletion of Elf3 led to decreased levels of IL-1β- and DMM-induced Mmp13 and Nos2 mRNA in vitro and in vivo, respectively. Histological grading showed attenuation of cartilage loss in Elf3 knockout mice compared to wild type (WT) littermates at 8 and 12 weeks following DMM surgery that correlated with reduced collagenase activity. Accordingly, Elf3 overexpression led to increased cartilage degradation post-surgery compared to WT counterparts. Our results provide evidence that ELF3 is a central contributing factor for cartilage degradation in post-traumatic OA in vivo.
Journal of Physical Chemistry C | 2011
Rajyalakshmi Vathyam; E.B. Wondimu; Sayantani Das; Chao Zhang; Stephanie Hayes; Zhimin Tao; Tewodros Asefa
Kelley and Firestein's Textbook of Rheumatology (Tenth Edition) | 2017
Mary B. Goldring; K.L. Culley; E.B. Wondimu; Miguel Otero
Osteoarthritis and Cartilage | 2016
E.B. Wondimu; K.L. Culley; J. Quinn; J. Chang; Cecilia L. Dragomir; D.A. Plumb; Mary B. Goldring; Miguel Otero
Osteoarthritis and Cartilage | 2016
M. Otero; Haibing Peng; Kaneyuki Tsuchimochi; E.B. Wondimu; K.L. Culley; Kosei Ijiri; Mary B. Goldring
Osteoarthritis and Cartilage | 2016
Miguel Otero; K.L. Culley; E.B. Wondimu; J. Quinn; J. Chang; Cecilia L. Dragomir; Kenneth B. Marcu; Mary B. Goldring
Osteoarthritis and Cartilage | 2016
D.A. Plumb; Cecilia L. Dragomir; J. Quinn; K.L. Culley; J. Chang; E.B. Wondimu; Mary B. Goldring; Miguel Otero
Osteoarthritis and Cartilage | 2015
V. Craveiro; Miguel Otero; K.L. Culley; E.B. Wondimu; M.C.H. van der Meulen; Mathias Bostrom; Mary B. Goldring