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Dive into the research topics where Abdul M. Mian is active.

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Featured researches published by Abdul M. Mian.


Molecular and Cellular Biology | 2007

Role of cytochrome C in apoptosis: increased sensitivity to tumor necrosis factor alpha is associated with respiratory defects but not with lack of cytochrome C release.

Uma D. Vempati; Francisca Diaz; Antoni Barrientos; Sonoko Narisawa; Abdul M. Mian; José Luis Millán; Lawrence H. Boise; Carlos T. Moraes

ABSTRACT Although the role of cytochrome c in apoptosis is well established, details of its participation in signaling pathways in vivo are not completely understood. The knockout for the somatic isoform of cytochrome c caused embryonic lethality in mice, but derived embryonic fibroblasts were shown to be resistant to apoptosis induced by agents known to trigger the intrinsic apoptotic pathway. In contrast, these cells were reported to be hypersensitive to tumor necrosis factor alpha (TNF-α)-induced apoptosis, which signals through the extrinsic pathway. Surprisingly, we found that this cell line (CRL 2613) respired at close to normal levels because of an aberrant activation of a testis isoform of cytochrome c, which, albeit expressed at low levels, was able to replace the somatic isoform for respiration and apoptosis. To produce a bona fide cytochrome c knockout, we developed a mouse knockout for both the testis and somatic isoforms of cytochrome c. The mouse was made viable by the introduction of a ubiquitously expressed cytochrome c transgene flanked by loxP sites. Lung fibroblasts in which the transgene was deleted showed no cytochrome c expression, no respiration, and resistance to agents that activate the intrinsic and to a lesser but significant extent also the extrinsic pathways. Comparison of these cells with lines with a defective oxidative phosphorylation system showed that cells with defective respiration have increased sensitivity to TNF-α-induced apoptosis, but this process was still amplified by cytochrome c. These studies underscore the importance of oxidative phosphorylation and apoptosome function to both the intrinsic and extrinsic apoptotic pathways.


Leukemia | 2010

Histone deacetylase inhibitors induce FPGS mRNA expression and intracellular accumulation of long-chain methotrexate polyglutamates in childhood acute lymphoblastic leukemia: implications for combination therapy

Guy J. Leclerc; Caihong Mou; Gilles M. Leclerc; Abdul M. Mian; Julio C. Barredo

Children with acute lymphoblastic leukemia (ALL) diagnosed with resistant phenotypes, and those who relapse, have a dismal prognosis for cure. The antifolate methotrexate (MTX), a universal component of ALL therapies, is metabolized by folylpoly-γ-glutamate synthetase (FPGS) into long-chain polyglutamates (MTX-PG3−7), resulting in enhanced cytotoxicity from prolonged inhibition of dihydrofolate reductase (DHFR) and thymidylate synthetase (TS). Using DNaseI assays, we identified a hypersensitive site upstream from exon-1, suggesting chromatin remodeling could alter FPGS expression. We demonstrated that histone deacetylase-1 (HDAC1) is recruited by NFY and Sp1 transcription factors to the FPGS promoter in ALL cell lines. We examined the effect of histone deacetylase inhibitors (HDACIs) sodium butyrate and suberoylanilide hydroxamic acid (SAHA) on the expression of FPGS and other folate-related genes. HDACIs increased FPGS mRNA expression by 2- to 5-fold, whereas DHFR and TS mRNA expression was decreased. Combination treatment with MTX plus SAHA significantly increased cytotoxicity and apoptosis in B- and T-ALL cell lines as compared with each drug alone (CI⩽0.8). SAHA increased the intracellular accumulation of long-chain MTX-PG3−7. Therefore, HDACI-induced FPGS expression increases the accumulation of MTX-PG3−7 and cytotoxicity in ALL cell lines, which is potentiated by DHFR and TS downregulation. The synergism exhibited by the combination of MTX and SAHA warrants clinical testing in ALL patients.


Blood | 2003

Potentiation of TRAIL-induced apoptosis in primary effusion lymphoma through azidothymidine-mediated inhibition of NF-κB

Subrata K. Ghosh; Charles Wood; Lawrence H. Boise; Abdul M. Mian; Vadim Deyev; Gerold Feuer; Ngoc Toomey; Nicole C. Shank; Lisa Cabral; Glen N. Barber; William J. Harrington


Cancer Research | 2003

The Oncolytic Effect of Recombinant Vesicular Stomatitis Virus Is Enhanced by Expression of the Fusion Cytosine Deaminase/Uracil Phosphoribosyltransferase Suicide Gene

Mercedes Porosnicu; Abdul M. Mian; Glen N. Barber


Blood | 2005

Azidothymidine inhibits NF-κB and induces Epstein-Barr virus gene expression in Burkitt lymphoma

Motoki Kurokawa; Subrata K. Ghosh; Juan Carlos Ramos; Abdul M. Mian; Ngoc Toomey; Lisa Cabral; Denise Whitby; Glen N. Barber; Dirk P. Dittmer; William J. Harrington


Biochemical Pharmacology | 1991

Thymidine and zidovudine metabolism in chronically zidovudine-exposed cells in vitro

Ram P. Agarwal; Abdul M. Mian


AIDS Research and Human Retroviruses | 1989

Uptake of 2′,3′-Dideoxyadenosine in Human Immunodeficiency Virus-Infected and Noninfected Human Cells

Ram P. Agarwal; Mariano Busso; Abdul M. Mian; Lionel Resnick


AIDS Research and Human Retroviruses | 1990

Cellular Pharmacology and Anti-HIV Activity of 2′,3′-Dideoxyguanosine

Mariano Busso; Lionel Resnick; B.H. Yang; Abdul M. Mian


Journal of Neuro-oncology | 2010

Safety and pharmacokinetic analysis of methotrexate administered directly into the fourth ventricle in a piglet model

David I. Sandberg; Juan Solano; Carol K. Petito; Abdul M. Mian; Caihong Mou; Tulay Koru-Sengul; Manuel Gonzalez-Brito; Kyle R. Padgett; Ali Luqman; Juan Carlos Buitrago; Farid Alam; Jerome R. Wilkerson; Kenneth M. Crandall; John W. Kuluz


Archive | 2009

gene expression in Burkitt lymphoma Azidothymidine inhibits NF-{kappa}B and induces Epstein-Barr virus

Denise Whitby; Glen N. Barber; Dirk P. Dittmer; William J. Harrington; Subrata K. Ghosh; Juan Carlos Ramos; Abdul M. Mian; Ngoc Toomey

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Dirk P. Dittmer

University of North Carolina at Chapel Hill

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