BRD4 inhibition induces synthetic lethality in ARID2-deficient hepatocellular carcinoma by increasing DNA damage

Dan-Dan He1, Xue-Ying Shang1, Na Wang1

  • 1Key Laboratory of Systems Biomedicine (Ministry of Education), Shanghai Center for Systems Biomedicine, Shanghai Jiao Tong University, Shanghai, 200240, China.

Oncogene
|January 12, 2022
PubMed

Insights

Targeting ARID2-deficient hepatocellular carcinoma (HCC) cells with BRD4 inhibitors like JQ1 shows promise. This approach exploits synthetic lethality by impairing DNA repair, offering a potential new therapy for HCC patients with ARID2 mutations.

Area of Science:

  • Oncology
  • Genetics
  • Molecular Biology

Background:

  • Hepatocellular carcinoma (HCC) is a leading cause of cancer death with limited effective treatments.
  • Loss-of-function mutations in ARID2, a SWI/SNF chromatin remodeler subunit, are frequent in HCC.
  • Therapeutic strategies for ARID2-mutated HCC remain unclear.

Purpose of the Study:

  • To identify potential drugs for synthetic lethality targeting ARID2-deficient HCC cells.
  • To investigate the therapeutic potential of BRD4 inhibition in ARID2-mutated HCC.

Main Methods:

  • High-throughput screening of 2,180 FDA-approved drugs and compounds.
  • Assessing the effect of JQ1 (BRD4 inhibitor) on ARID2-deficient HCC cell growth.
  • Investigating DNA damage and repair pathways (HR, NHEJ) in response to JQ1 and ARID2 deficiency.

Main Results:

  • JQ1 selectively suppressed the growth of ARID2-deficient HCC cells.
  • JQ1 exacerbated DNA damage, particularly double-strand breaks (DSBs), upon ARID2 depletion.
  • BRD4 inhibition and ARID2 deficiency synergistically impaired homologous recombination and non-homologous end-joining pathways by downregulating BRCA1, RAD51, and 53BP1.

Conclusions:

  • BRD4 inhibition induces synthetic lethality in ARID2-deficient HCC cells.
  • Disruption of ARID2 and BRD4 hinders DNA repair gene expression, leading to DSB accumulation and apoptosis.
  • BRD4 inhibition presents a potential therapeutic strategy for HCC patients with ARID2 mutations.

Related Concept Videos

DNA Damage can Stall the Cell Cycle02:37

DNA Damage can Stall the Cell Cycle

In response to DNA damage, cells can pause the cell cycle to assess and repair the breaks. However, the cell must check the DNA at certain critical stages during the cell cycle. If the cell cycle pauses before DNA replication, the cells will contain twice the amount of DNA. On the other hand, if cells arrest after DNA replication but before mitosis, they will contain four times the normal amount of DNA. With a host of specialized proteins at their disposal,cells must use the right protein at...
9.4K
DNA Damage Can Stall the Cell Cycle02:37

DNA Damage Can Stall the Cell Cycle

2.7K
Base Excision Repair01:54

Base Excision Repair

One of the common DNA damages is the chemical alteration of single bases by alkylation, oxidation, or deamination. The altered bases cause mispairing and strand breakage during replication. This type of damage causes minimal change to the DNA double helix structure and can be repaired by the base excision repair (BER) pathways. BER corrects damaged DNA sequences by removing the damaged base and restoring the original base sequence using the complementary strand as a template.
The first step of...
23.4K
Abnormal Proliferation02:23

Abnormal Proliferation

Under normal conditions, most adult cells remain in a non-proliferative state unless stimulated by internal or external factors to replace lost cells. Abnormal cell proliferation is a condition in which the cell's growth exceeds and is uncoordinated with normal cells. In such situations, cell division persists in the same excessive manner even after cessation of the stimuli, leading to persistent tumors. The tumor arises from the damaged cells that replicate to pass the damage to the...
4.7K
Treatment Resistant Cancers02:56

Treatment Resistant Cancers

Cancer is the second leading cause of death in the United States. A cancer cell is genetically unstable and hence can mutate faster. They can also modify their microenvironment and escape immune surveillance. The difficulties in treating cancer are further compounded by the emergence of rapid resistance to anticancer drugs. The most common ways to attain resistance in cancer cells include alteration in drug transport and metabolism, modification of drug target, elevated DNA damage response, or...
3.4K
Inhibition of Cdk Activity02:34

Inhibition of Cdk Activity

The orderly progression of the cell cycle depends on the activation of Cdk protein by binding to its cyclin partner. However, the cell cycle must be restricted when undergoing abnormal changes. Most cancers correlate to the deregulated cell cycle, and since Cdks are a central component of the cell cycle, Cdk inhibitors are extensively studied to develop anticancer agents. For instance, cyclin D associates with several Cdks, such as Cdk 4/6, to form an active complex. The cyclin D-Cdk4/6 complex...
5.0K