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Hypoxic microenvironment shapes HIV-1 replication and latency

Journal article

Zhuang X. et al, (2020), Communications Biology, 3

MITF controls the TCA cycle to modulate the melanoma hypoxia response.

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Louphrasitthiphol P. et al, (2019), Pigment Cell Melanoma Res

Inherent DNA‐binding specificities of the HIF‐1α and HIF‐2α transcription factors in chromatin

Journal article

Smythies JA. et al, (2019), EMBO reports, 20, e46401 - e46401

The SIN3A histone deacetylase complex is required for a complete transcriptional response to hypoxia

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Tiana M. et al, (2018), Nucleic Acids Research, 46, 120 - 133

Multiple renal cancer susceptibility polymorphisms modulate the HIF pathway

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Grampp S. et al, (2017), PLOS Genetics, 13, e1006872 - e1006872

Capture‐C reveals preformed chromatin interactions between HIF‐binding sites and distant promoters

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Platt JL. et al, (2016), EMBO reports, 17, 1410 - 1421

Clinical features of the pathogenic m.5540G>A mitochondrial transfer RNA tryptophan gene mutation

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Ng YS. et al, (2016), Neuromuscular Disorders, 26, 702 - 705

Tuning the Transcriptional Response to Hypoxia by Inhibiting Hypoxia-inducible Factor (HIF) Prolyl and Asparaginyl Hydroxylases

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Chan MC. et al, (2016), Journal of Biological Chemistry, 291, 20661 - 20673

Hypoxic regulation of the noncoding genome and NEAT1

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Choudhry H. and Mole DR., (2016), Briefings in Functional Genomics, 15, 174 - 185

Hypoxia, Hypoxia-inducible Transcription Factors, and Renal Cancer

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Schödel J. et al, (2016), European Urology, 69, 646 - 657

Suppression of plasma hepcidin by venesection during steady-state hypoxia

Journal article

Talbot NP. et al, (2016), Blood, 127, 1206 - 1207

Destruction of a distal hypoxia response element abolishes trans-activation of the PAG1 gene mediated by HIF-independent chromatin looping

Journal article

Schoerg A. et al, (2015), AMERICAN JOURNAL OF HEMATOLOGY, 90, E163 - E163

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