Tatiana Kouznetsova
University of Illinois at Chicago
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Tatiana Kouznetsova.
Experimental Hematology | 2009
Janet Chin; Mahipal Singh; Virryan Banzon; Kestis Vaitkus; Vinzon Ibanez; Tatiana Kouznetsova; Nadim Mahmud; Joseph DeSimone; Donald Lavelle
OBJECTIVE To investigate the mechanism(s) responsible for increased gamma-globin expression in vivo in decitabine-treated baboons and in vitro in cultured erythroid progenitor cells (EPC) from adult baboon bone marrow (BM). MATERIALS AND METHODS Fetal liver, adult BM erythroid cells pre- and post-decitabine, and cultured EPCs were analyzed for distribution of RNA polymerase II, histone acetylation, and histone H3 (lys4) trimethyl throughout the gamma-globin gene complex by chromatin immunoprecipitation. DNA methylation of the gamma-globin promoter was determined by bisulfite sequencing. Expression of the baboon Igamma- and Vgamma-globin chains was determined by high performance liquid chromatography (HPLC). Expression of BCL11A, a recently identified repressor of gamma-globin expression, was analyzed by Western blot. RESULTS Increased gamma-globin expression in decitabine-treated baboons and cultured EPC correlated with increased levels of RNA polymerase II, histone acetylation, and histone H3 (lys4) trimethyl associated with the gamma-globin gene consistent with a transcriptional activation mechanism. Cultured EPC expressed the Igamma- and Vgamma-globin chains in a pattern characteristic of fetal development. The level of DNA methylation of the gamma-globin gene promoter in EPC cultures was similar to BM erythroid cells from normal adult baboons. Different BCL11A isoforms were observed in BM erythroid cells and cultured EPC. CONCLUSION The mechanism responsible for increased gamma-globin expression in cultured EPC was unexpectedly not associated with increased DNA hypomethylation of the gamma-globin gene promoter compared to normal BM erythroid cells, in contrast to BM erythroid cells of decitabine-treated baboons. Rather, increased fetal hemoglobin in EPC cultures was associated with a fetal Igamma/Vgamma chain ratio and a difference in the size of the BCL11A protein compared to normal BM erythroid cells.
Experimental Hematology | 2015
Angela Rivers; Kestis Vaitkus; Maria Armila Ruiz; Vinzon Ibanez; Ramasamy Jagadeeswaran; Tatiana Kouznetsova; Joseph DeSimone; Donald Lavelle
Increased levels of fetal hemoglobin are associated with decreased symptoms and increased lifespan in patients with sickle cell disease (SCD). Hydroxyurea, the only drug currently approved for SCD, is not effective in a large fraction of patients, and therefore, new agents are urgently needed. Recently it was found that lysine demethylase 1, an enzyme that removes monomethyl and dimethyl residues from the lysine 4 residue of histone H3, is a repressor of γ-globin gene expression. In this article, we have compared the ability of tranylcypromine (TCP) and a more potent TCP derivative, RN-1, to increase γ-globin expression in cultured baboon erythroid progenitor cells and in the SCD mouse model. The results indicate that the ability of RN-1 to induce F cells and γ-globin mRNA in SCD mice is similar to that of decitabine, the most powerful fetal hemoglobin-inducing drug known, and greater than that of either TCP or hydroxyurea. We conclude that RN-1 and other lysine demethylase 1 inhibitors may be promising new γ-globin-inducing agents for the treatment of SCD that warrant further studies in other preclinical models, such as nonhuman primates.
PLOS ONE | 2012
Donald Lavelle; Kestutis Vaitkus; Maria Armila Ruiz; Vinzon Ibanez; Tatiana Kouznetsova; Yogen Saunthararajah; Nadim Mahmud; Joseph DeSimone
This study was performed to investigate the hypothesis that the erythroid micro-environment plays a role in regulation of globin gene expression during adult erythroid differentiation. Adult baboon bone marrow and human cord blood CD34+ progenitors were grown in methylcellulose, liquid media, and in co-culture with stromal cell lines derived from different developmental stages in identical media supporting erythroid differentiation to examine the effect of the micro-environment on globin gene expression. Adult progenitors express high levels of γ-globin in liquid and methylcellulose media but low, physiological levels in stromal cell co-cultures. In contrast, γ-globin expression remained high in cord blood progenitors in stromal cell line co-cultures. Differences in γ-globin gene expression between adult progenitors in stromal cell line co-cultures and liquid media required cell-cell contact and were associated with differences in rate of differentiation and γ-globin promoter DNA methylation. We conclude that γ-globin expression in adult-derived erythroid cells can be influenced by the micro-environment, suggesting new potential targets for HbF induction.
Blood | 2014
Angela Rivers; Kestis Vaitkus; Maria Armila Ruiz; Vinzon Ibanez; Tatiana Kouznetsova; Joseph DeSimone; Donald Lavelle
Blood | 2013
Maria Armila Ruiz; Kestis Vaitkus; Tatiana Kouznetsova; Joseph DeSimone; Donald Lavelle
Blood | 2013
Maria Armila Ruiz; Angela Rivers; Kestis Vaitkus; Tatiana Kouznetsova; Nadim Mahmud; Joseph DeSimone
Blood | 2012
Maria Armila Ruiz; Kestis Vaitkus; Aparna Vasanthakumar; Angela Rivers; Tatiana Kouznetsova; Joseph DeSimone; Lucy A. Godley; Donald Lavelle
Blood | 2011
Maria Armila Ruiz; Kestutis Vaitkus; Tatiana Kouznetsova; Joseph DeSimone; Yogen Saunthararajah; Donald Lavelle
Blood | 2011
Donald Lavelle; Kestutis Vaitkus; Maria Armila Ruiz; Cassandra List; Tatiana Kouznetsova; Joseph DeSimone; Yogen Saunthararajah
Blood | 2010
Donald Lavelle; Yogenthiran Saunthararajah; Nadim Mahmud; Vinzon Ibanez; Maria Armila Ruiz; Kestis Vaitkus; Tatiana Kouznetsova; Joseph DeSimone