Open Access. Powered by Scholars. Published by Universities.®

Medicine and Health Sciences Commons

Open Access. Powered by Scholars. Published by Universities.®

Anatomy

Himmelfarb Health Sciences Library, The George Washington University

Series

2013

Articles 1 - 2 of 2

Full-Text Articles in Medicine and Health Sciences

Conserved Structural Domains In Foxd4l1, A Neural Forkhead Box Transcription Factor, Are Required To Repress Or Activate Target Genes, Steven L. Klein, Karen M. Neilson, John Orban, Sergey Yaklichkin, Jennifer Hoffbauer, Kathy Mood, Ira O. Daar, Sally Ann Moody Apr 2013

Conserved Structural Domains In Foxd4l1, A Neural Forkhead Box Transcription Factor, Are Required To Repress Or Activate Target Genes, Steven L. Klein, Karen M. Neilson, John Orban, Sergey Yaklichkin, Jennifer Hoffbauer, Kathy Mood, Ira O. Daar, Sally Ann Moody

Anatomy and Regenerative Biology Faculty Publications

FoxD4L1 is a forkhead transcription factor that expands the neural ectoderm by down-regulating genes that promote the onset of neural differentiation and up-regulating genes that maintain proliferative neural precursors in an immature state. We previously demonstrated that binding of Grg4 to an Eh-1 motif enhances the ability of FoxD4L1 to down-regulate target neural genes but does not account for all of its repressive activity. Herein we analyzed the protein sequence for additional interaction motifs and secondary structure. Eight conserved motifs were identified in the C-terminal region of fish and frog proteins. Extending the analysis to mammals identified a high scoring …


The Dn2 Myeloid-T (Dn2mt) Progenitor Is A Target Cell For Leukemic Transformation By The Tlx1 Oncogene, Lynnsey A. Zweier-Renn, Irene Riz, Teresa S. Hawley, Robert G. Hawley Jan 2013

The Dn2 Myeloid-T (Dn2mt) Progenitor Is A Target Cell For Leukemic Transformation By The Tlx1 Oncogene, Lynnsey A. Zweier-Renn, Irene Riz, Teresa S. Hawley, Robert G. Hawley

Anatomy and Regenerative Biology Faculty Publications

Introduction: Inappropriate activation of the TLX1 (T-cell leukemia homeobox 1) gene by chromosomal translocation is a recurrent event in human T-cell Acute Lymphoblastic Leukemia (T-ALL). Ectopic expression of TLX1 in murine bone marrow progenitor cells using a conventional retroviral vector efficiently yields immortalized cell lines and induces T-ALL-like tumors in mice after long latency.

Methods: To eliminate a potential contribution of retroviral insertional mutagenesis to TLX1 immortalizing and transforming function, we incorporated the TLX1 gene into an insulated self-inactivating retroviral vector.

Results: Retrovirally transduced TLX1-expressing murine bone marrow progenitor cells had a growth/survival advantage and readily gave rise to immortalized …