LabNarrative concept · prepared as an independent design proposal
Zhang LaboratoryTranscription · RNA regulation · Therapy resistance

Transcription factors · Cofactors · RNA processing · Therapy resistance

Engineering precision into cancer transcription

The Zhang Laboratory investigates how transcription factors, cofactors, chromatin and RNA-processing systems are co-opted to create cancer-specific gene programmes—and why those programmes persist when therapies target the wrong molecular interface.

Transcriptional cofactor cooperativityBET-inhibitor resistanceRNA modification and glioblastoma stemnessTherapy-induced senescence
DNApromoter
TFfactor
CFcofactor
Pol IItranscription
RNAprocessing
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Regulatory precision emerges from cooperative molecular assemblies.

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The regulatory interface is the therapeutic opportunity.

Transcription is not a single switch. It is an assembled system in which DNA-bound factors, cofactors, chromatin regulators, RNA polymerase and RNA-modifying machinery cooperate to determine which genes are expressed, at what strength and in what molecular form. The laboratory resolves these dependencies in breast cancer and glioblastoma to expose vulnerabilities that can be targeted more precisely.

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Research programmes

Mechanisms with therapeutic consequence.

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Sicong Zhang, PhDTranscription systems · principal investigator

Principal investigator

Sicong Zhang, PhD

Assistant Professor

Sicong Zhang studies how transcription factors, cofactors, chromatin and RNA-modifying machinery create cancer-specific gene programmes. His work bridges mechanistic transcription biology with functional genomics and translational strategies for breast cancer and glioblastoma.
Meet the laboratory
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Selected work

Recent and defining publications.

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Join the laboratory

Interested in transcriptional regulation, RNA biology and resistance?

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