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Oncology

Department of Biochemistry and Molecular Biology Faculty Papers

Thomas Jefferson University

Publication Year

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Full-Text Articles in Medicine and Health Sciences

Crosstalk Between Desmoglein 2 And Patched 1 Accelerates Chemical-Induced Skin Tumorigenesis., Donna M Brennan-Crispi, Claudia Hossain, Joya Sahu, Mary Brady, Natalia A Riobo, M G Mahoney Apr 2015

Crosstalk Between Desmoglein 2 And Patched 1 Accelerates Chemical-Induced Skin Tumorigenesis., Donna M Brennan-Crispi, Claudia Hossain, Joya Sahu, Mary Brady, Natalia A Riobo, M G Mahoney

Department of Biochemistry and Molecular Biology Faculty Papers

Aberrant activation of Hedgehog (Hh) signaling is causative of BCCs and has been associated with a fraction of SCCs. Desmoglein 2 (Dsg2) is an adhesion protein that is upregulated in many cancers and overexpression of Dsg2 in the epidermis renders mice more susceptible to squamous-derived neoplasia. Here we examined a potential crosstalk between Dsg2 and Hh signaling in skin tumorigenesis. Our findings show that Dsg2 modulates Gli1 expression, in vitro and in vivo. Ectopic expression of Dsg2 on Ptc1+/lacZ background enhanced epidermal proliferation and interfollicular activation of the Hh pathway. Furthermore, in response to DMBA/TPA, the Dsg2/Ptc1+/lacZ mice developed squamous …


Parp-2 And Parp-3 Are Selectively Activated By 5' Phosphorylated Dna Breaks Through An Allosteric Regulatory Mechanism Shared With Parp-1., Marie-France Langelier, Amanda A Riccio, John M Pascal Aug 2014

Parp-2 And Parp-3 Are Selectively Activated By 5' Phosphorylated Dna Breaks Through An Allosteric Regulatory Mechanism Shared With Parp-1., Marie-France Langelier, Amanda A Riccio, John M Pascal

Department of Biochemistry and Molecular Biology Faculty Papers

PARP-1, PARP-2 and PARP-3 are DNA-dependent PARPs that localize to DNA damage, synthesize poly(ADP-ribose) (PAR) covalently attached to target proteins including themselves, and thereby recruit repair factors to DNA breaks to increase repair efficiency. PARP-1, PARP-2 and PARP-3 have in common two C-terminal domains-Trp-Gly-Arg (WGR) and catalytic (CAT). In contrast, the N-terminal region (NTR) of PARP-1 is over 500 residues and includes four regulatory domains, whereas PARP-2 and PARP-3 have smaller NTRs (70 and 40 residues, respectively) of unknown structural composition and function. Here, we show that PARP-2 and PARP-3 are preferentially activated by DNA breaks harboring a 5' phosphate …