RNA Hub

We are working to understand the fundamental mechanisms by which changes in different aspects of RNA biology contribute to cancer initiation and progression.

RNA in physiology and disease 2026

7-9 September 2026 | Newcastle upon Tyne, UK

Registration is now open for the RNA in physiology and disease conference, co-organised by Dr Lovorka Stojic and the Genetics Society.

This international meeting will bring together world-leading experts in various aspects of RNA function and regulation, showcasing the most recent advances in our understanding of RNA processes in normal physiology and disease. The conference will also provide a platform for early- and mid-career researchers to present their recent findings, discuss ideas, and form new connections and collaborations that will advance the field of RNA biology.

Registration and more details

Meet the RNA Hub members

Dr Diu Nguyen

Gene expression defines the fate and function of each cell. Dr Diu Nguyen’s lab’s recent work and others have demonstrated that post-transcriptional regulation of gene expression by RNA-binding proteins (RBPs) plays a critical role in cancer, including leukaemia (Vu,…, Nguyen et al. 2017; Nguyen et al. Nat. Comms 2020; Cheng,…, Nguyen et al. Cancer Cells 2021; Prieto and Nguyen et al. Nat Cancer 2021). Importantly, the identification of dysregulated RBPs in leukaemia has led to the rapid development of therapeutic strategies to specifically target several RBPs. Despite their importance and therapeutic potential, only a small fraction of RNA regulators (>1,700 known RBPs) has been investigated in leukaemia.

My research aims to expand understanding of how dysregulated post-transcriptional processes contribute to the initiation and progression of various types of leukaemia, with a particular focus on acute myeloid leukaemia (AML). To achieve this aim, we will:

  1. Determine the role of a subset of aberrantly expressed RBPs in leukaemic stem cell survival and whether they contribute to leukaemia pathogenesis
  2. Investigate how these RBPs control normal haematopoietic stem cell behaviours
  3. Elucidate the molecular basis for RBP functions in blood cancer

Dr Lovorka Stojic

Mistakes during cell division can lead to genome instability, which underlies many human diseases including cancer. To avoid these errors, cell division is controlled at multiple levels by “guardian” proteins. However, only 2% of the human genome codes for proteins, with the majority of the human genome being transcribed into noncoding RNAs (ncRNAs) that have important cellular functions without requiring translation into proteins.

The Stojic laboratory is interested in one group of these ncRNAs, namely long noncoding RNAs (lncRNAs), and their role in control of cell division and maintenance of genome stability. Since lncRNAs are also deregulated in different types of cancer, there is an unmet need to understand how these RNA molecules contribute to known hallmarks of cancer.

In order to understand how lncRNA-mediated regulatory networks control cell division and determine their functional relevance in cancer, the Stojic lab aim to:

  • Functionally dissect how lncRNA genes involved in the control of cell division maintain genome stability
  • Identify the mechanisms whereby lncRNAs safeguard genome integrity
  • Determine the impact of lncRNA dysregulation on genome instability in cancer

Dr Kevin Rouault Pierre

Increased genomic and transcriptomic sequencing have revealed that, through various means, mRNA splicing is altered in cancer. Mutations or changes in expression levels of splicing factors (SF) and RNA binding proteins (RBPs) can lead to dysfunctional gene splicing and activation of oncogenic pathways. Mutations in splicing factors are frequent across cancers, with the SF3B1 gene being the most commonly altered. Altogether alteration in SFs and RBPs promote a general acceptance that aberrant splicing is a pan-cancer hallmark that drives disease progression.

Splicing factors are mutated in >50% of patients with myelodysplastic syndromes (MDS); Dr Kevin Rouault-Pierre‘s lab previously demonstrated that SF3B1 mutations originate from the most immature haematopoietic compartment in MDS and published in-vivo and in-vitro models to study clonal architecture and dynamic at different stages of the disease, from pre-malignant to acute myeloid leukemia (AML) transformation. MDS cells often present differentiation blockage and we know that splicing events will depend on variants’ expression which will be, to some extent, different between stem and progenitor cells. Therefore, Dr Rouault-Pierre’s lab investigate the impact of SF3B1 mutations in cells undergoing differentiation in MDS models that will allow us to study pre/malignant stages and overt cancer upon progression of MDS towards AML.

Professor Tyson V. Sharp

Professor Tyson Sharp’s group is interested in the microRNA (miRNA) pathway, which is a post-transcriptional gene silencing mechanism in cells. The miRNA-silencing regulatory pathway impinges on aspects of cell biology and organism physiology. The importance of this pathway in cancer biology is reflected by the fact that in the last 5 years alone, over 35,000 articles have been published on miRNAs in cancer according to PubMed.

Professor Sharp’s group’s interest in RNA biology is primarily investigating how:

  • The LIMD1 family of scaffold proteins (LIMD1, Ajuba and WTIP (LAW)) co-ordinates and regulates the microRNA-induced silencing complex – miRISC for short. This complex is the key effector of microRNA function in the cell, although the functional diversity of miRISC species is currently unclear. The role of LAW proteins in the assembly of different species of miRISC is therefore an active area of research in the lab.
  • How the loss of LAW proteins in cancer affect miRISC function, gene expression and, in turn, how this ultimately impacts on carcinogenesis.

Professor Jun Wang

The rich resources of publicly available data, such as those generated by the Cancer Genome Atlas and International Cancer Genome Consortium, have provided great opportunities to systematically study the functionality and clinical relevance of many novel genes, including long non-coding RNAs (lncRNAs). Their roles in cancer development and progression remain unexplored in many cancers. Professor Jun Wang‘s lab is interested in applying bioinformatics and computational approaches to analyse large-scale cancer datasets to uncover novel diagnostic and prognostic RNA features.

Dr Wang’s lab is focusing on two areas:

  • Characterising known and novel lncRNAs associated with disease progression and tumour microenvironment. Currently, they are using high-grade serous ovarian cancer as a study model.
  • Identifying functional non-coding mutations that contribute to the dysregulated RNA genes, including lncRNAs. Currently, they are integrating ChIP-seq, RNA-seq, WGS and STARR-seq to explore non-coding driver events in pancreatic cancer.

Professor Prabhakar Rajan

Dr Prabhakar Rajan‘s lab (UroSplice Group) are studying how alternative splicing and RNA-binding proteins impact on prostate cancer phenotypes, and identifying new prostate cancer RNA biomarkers of disease progression. The group’s main interests lie in the transcriptional and post-transcriptional regulation of alternative splicing, and the impact thereof on cancer-related splicing events underlying key biology. They are exploring novel links between splicing regulation and the tumour microenvironment following key genomic changes in prostate cancer.


Key Publications from the RNA Cancer Hub

  • The AGO2 adaptor LIMD1 expands the functional and evolutionary reach of microRNA targeting. Sci Adv (2026). Jul 24;12(30):eaed6875 PMID: 42490457
  • RSRC2 is a novel RNA-binding protein that safeguards mitotic fidelity by interacting with the lncRNA C1QTNF1-AS1. Nucleic Acids Res (2026). 54(5):gkag229. PMID: 41841495
  • TREX reveals proteins that bind to specific RNA regions in living cells. Nat Methods (2024). 21(3):423-434. PMID: 38374261
  • PERK orchestrates an endoplasmic reticulum stress alternative splicing program via CLK1/SRSF1. Nat Commun (2026). Online ahead of print. PMID: 42321166
  • Vitamin B5 and succinyl-CoA improve ineffective erythropoiesis in SF3B1-mutated myelodysplasia. Sci Transl Med (2023). 15(685):eabn5135. PMID: 36857430
  • C-terminal tagging impairs AGO2 function. RNA Biol (2025). 22(1):1-24. PMID: 40698645
  • The integrated molecular and histological analysis defines subtypes of esophageal squamous cell carcinoma. Nat Commun (2024). 15(1):8988. PMID: 39419971
  • FOXA1 regulates alternative splicing in prostate cancer. Cell Rep (2022). 40(13):111404. PMID: 36170835
  • Investigating ribosome biogenesis in AML identifies MYB-binding protein 1A (MYBBP1A) as an essential regulator of leukemia cells. Blood (2025). 146(Suppl 1):990. DOI: 10.1182/blood-2025-990
  • Functional plasticity of RNA-binding proteins in cancer: both friend and foe. Trends Cancer (2026). 12(1):80-94. PMID: 41271537

 

Previous events

The RNA Hub hosts regular events that bring together national and international cancer RNA experts to discuss the latest development in the field. Below are some highlights and pictures from previous events.

RNA Regulation and Therapeutics Minisymposium 2026

On 16th July 2026, the RNA Hub hosted another RNA minisymposium, entitled “RNA Regulation and Therapeutics,” as part of the annual London RNA Club, followed by drinks and pizza. It was an inspiring day, with great talks from Dr Alessandro Bonetti (AstraZeneca), Dr Shoshana Burke (Barts Cancer Institute), Dr Bianca Pierattini (University of Cambridge), Dr Charlotte Capitanchik (King’s College London), Dr Chris Mapperley (Institute of Cancer Research), Dr Phuong To (Barts Cancer Institute), and Dr John Knight (University of Manchester).

The event was received well with excellent feedback from the audience. We look forward to the next one in 2027!

RNA UK 2024

The RNA UK 2024 meeting took place on 25th – 28th January in Windermere, UK, and was organised by Dr Lovorka Stojic, Dr Faraz Mardakheh and Prof. Kamil Kranc.

The organisers would like to thank the sponsors, the Genetics Society and the RNA society, as well as industry partners Novogene, Eclipse Bio and Cambridge Bioscience, for enabling us to have this meeting.

Barts RNA Cancer Symposium 2023

The RNA Cancer Hub hosted its inaugural conference: the Barts RNA Cancer symposium on 15th June 2023. This one-day symposium provided a venue for world-renowned scientists, PhD students, postdocs and researchers in the field to exchange the latest findings in the field of RNA and cancer biology.

Thank you to all of our attendees who joined us at Charterhouse Square. Here are some photos from the day.