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Dive into the research topics where Dorothy Tuan is active.

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Featured researches published by Dorothy Tuan.


Molecular and Cellular Biology | 1997

Transcription of the HS2 Enhancer toward a cis-Linked Gene Is Independent of the Orientation, Position, and Distance of the Enhancer Relative to the Gene

Suming Kong; Daniel Bohl; Chunhua Li; Dorothy Tuan

The locus control region (LCR) regulates transcription of the downstream beta-like globin genes 10 to 50 kb away. Among hypersensitive sites HS4, -3, -2, and -1, which define the LCR in erythroid cells, HS2 possesses prominent enhancer function. The mechanism by which the HS2 enhancer and other functional components of the LCR act over the distance is not clear. We have used reverse transcription-PCR and RNase protection assays to analyze the transcriptional statuses of both the endogenous and the transfected HS2 enhancer in erythroid K562 cells. A novel pattern of HS2 enhancer transcription was observed. The endogenous HS2 enhancer was transcribed predominantly in the direction toward the downstream globin genes. The HS2 enhancer in transfected recombinant chloramphenicol acetyltransferase (CAT) plasmids was also transcribed predominantly toward the CAT gene, regardless of whether the enhancer was placed (i) in the genomic or reverse genomic orientation, (ii) in a position 5 or 3 to the gene, or (iii) at various distances up to 6 kb from the gene. The orientation, position, and distance independence in gene-tropic transcription of the HS2 enhancer correlates with the observed orientation, position, and distance independence of HS2 enhancer function and suggests that enhancer transcription may play a role in enhancer function.


Proceedings of the National Academy of Sciences of the United States of America | 1989

An erythroid-specific, developmental-stage-independent enhancer far upstream of the human "beta-like globin" genes.

Dorothy Tuan; William B. Solomon; Irving M. London; David P. Lee


Archive | 1988

Human erythroid-specific transcriptional enhancer

Dorothy Tuan; Irving M. London; William B. Solomon


Blood Cells Molecules and Diseases | 1997

Modulatory subdomains of the HS2 enhancer differentially regulate enhancer activity in erythroid cells at different developmental stages.

Resy Cavallesco; Dorothy Tuan


Archive | 1994

Retroviral vectors for transducing beta-globin gene and beta-locus control region derivatives

Philippe Leboulch; Irving M. London; Dorothy Tuan


Progress in Clinical and Biological Research | 1989

Characterization of a human globin enhancer element.

Dorothy Tuan; William B. Solomon; Cavallesco R; Huang G; Irving M. London


Archive | 1993

Retroviral vectors for transducing β-globin gene and β-locus control region derivatives

Philippe Leboulch; Irving M. London; Dorothy Tuan


Archive | 2016

An erythroid-specific, developmental-stage-independent enhancer far upstream of the human ",8-like globin" genes (chloramphenicol acetyltransferase assays/K562 cells/MEL cells)

Dorothy Tuan; William B. Solomon; Irving M. London; David P. Lee


Archive | 1994

Retroviral vectors for the transduction of the beta-globin gene, as well as derivatives of the beta-site controlled region of the beta-site

Philippe Leboulch; M. Irving London; Dorothy Tuan


Archive | 1994

Retrovirale vektoren für die transduktion des beta-globingens, sowie derivaten der beta-ort kontrollierten region des beta-orts Retroviral vectors for the transduction of beta-globin gens, as well as derivatives of beta-site controlled region of the beta-stationary

Philippe Leboulch; M. Irving London; Dorothy Tuan

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Irving M. London

Albert Einstein College of Medicine

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William B. Solomon

Massachusetts Institute of Technology

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Philippe Leboulch

Brigham and Women's Hospital

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David P. Lee

Massachusetts Institute of Technology

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Cavallesco R

Massachusetts Institute of Technology

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Chunhua Li

Massachusetts Institute of Technology

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Daniel Bohl

Massachusetts Institute of Technology

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Huang G

Massachusetts Institute of Technology

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Resy Cavallesco

Massachusetts Institute of Technology

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Suming Kong

Massachusetts Institute of Technology

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