World-first cancer drugs could work in larger group of patients

Posted: March 19, 2015 at 3:44 pm

A pioneering class of drugs that target cancers with mutations in the BRCA breast cancer genes could also work against tumours with another type of genetic fault, a new study suggests.

Scientists at The Institute of Cancer Research, London, found that errors in a gene called CLBC leave cancer cells vulnerable to PARP inhibitor drugs. Around 2 per cent of all tumours have defects in CLBC.

The study, which was carried out in collaboration with colleagues in Denmark and the Czech Republic, was funded in the UK by the European Union, and was published today (Thursday) in the journal Oncotarget.

Olaparib, a PARP inhibitor, became the first cancer drug targeted at an inherited genetic fault to reach the market when it was approved in December for use in ovarian cancer patients with BRCA1 or BRCA2 mutations. Its development was underpinned by research at The Institute of Cancer Research (ICR).

Using an approach known as RNA interference screening - which 'silences' genes to analyse their function - researchers systematically tested which of the 25,000 genes in the human genome affected the response of cancer cells to olaparib.

The ICR team found that cancer cells with a defect in the CBLC gene were as sensitive to the drug as those with a faulty BRCA2 gene.

By analysing the molecular processes that the CBLC gene controls, researchers found that it normally allows cells to repair damaged DNA by fixing broken DNA strands back together.

This finding indicates that a flaw in DNA repair mechanisms explains the sensitivity of CBLC-defective cancer cells to PARP inhibitors - which knock out the action of another DNA repair mechanism.

DNA repair is often disrupted in cancer cells, which sacrifice genetic stability as they gain mutations that allow them to divide uncontrollably. These cancer cells may be particularly vulnerable to drugs to block DNA repair proteins, since they may lack any alternative functioning repair systems to fall back on.

Study co-leader Dr Chris Lord, Team Leader in Gene Function at The Institute of Cancer Research, London, said:

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World-first cancer drugs could work in larger group of patients

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