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Updated: Jul 31, 2025

Subcellular Fractionation from Fresh and Frozen Gastrointestinal Specimens
Published on: July 15, 2018
Nuclear export of BATF2 enhances colorectal cancer proliferation through binding to CRM1
Jie Zhou1, Zengjie Lei2, Jianfang Chen1
1Department of Oncology and Southwest Cancer Center, Southwest Hospital, Army Medical University (Third Military Medical University), Chongqing, China.
Background:
During the tumourigenesis and development of colorectal cancer (CRC), the inactivation of tumour suppressor genes is closely involved, although detailed molecular mechanisms remain elusive. Accumulating studies, including ours, have demonstrated that basic leucine zipper transcription factor ATF (activating transcription factor)-like 2 (BATF2) is a capable tumour suppressor that localises in the nucleus. However, its different subcellular localisation, potential functions and underlying mechanisms are unclear.
Methods:
The translocation of BATF2 and its clinical relevance were detected using CRC samples, cell lines and xenograft nude mice. Candidate BATF2-binding proteins were screened using co-immunoprecipitation, quantitative label-free liquid chromatography-tandem mass spectrometry proteomic analysis, Western blotting and immunofluorescence. Recombinant plasmids, point mutations and siRNAs were applied to clarify the binding sites between BATF2 and chromosome region maintenance 1 (CRM1).
Results:
The present study found that BATF2 was mainly localised in the cytoplasm, rather than nucleus, of CRC cells in vitro and in vivo, while cytoplasmic BATF2 expression was inversely correlated with the prognosis of CRC patients. Furthermore, we identified the nuclear export and subsequent ubiquitin-mediated degradation of BATF2 in CRC cells. Mechanistically, a functional nuclear export sequence (any amino acid) was characterised in BATF2 protein, through which BATF2 bound to CRM1 and translocated out of nucleus, ultimately enhancing CRC growth via inducing activator protein 1 (AP-1)/cyclin D1/phosphorylated retinoblastoma protein (pRb) signalling pathway. Additionally, nuclear export of BATF2 can be retarded by the mutation of NES in BATF2 or the knockdown of CRM1, whereas CRM1 expression was negatively associated with nuclear BATF2 expression and the prognosis of CRC patients.
Conclusion:
These findings revealed the biological effects and underlying mechanisms of cytoplasmic localisation of BATF2. Furthermore, suppressing nuclear export of BATF2 via mutating its NES region or inhibiting CRM1 expression may serve as a promising therapeutic strategy against CRC.
Insights
Basic leucine zipper transcription factor ATF-like 2 (BATF2) is found in the cytoplasm of colorectal cancer cells, promoting tumor growth. Inhibiting its nuclear export may offer a new therapeutic strategy for CRC.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Tumor suppressor gene inactivation is critical in colorectal cancer (CRC) development.
- Basic leucine zipper transcription factor ATF-like 2 (BATF2) is a known tumor suppressor, but its subcellular localization and function in CRC are unclear.
Purpose of the Study:
- To investigate the subcellular localization of BATF2 in colorectal cancer (CRC).
- To elucidate the molecular mechanisms underlying BATF2's role in CRC progression.
- To explore potential therapeutic strategies targeting BATF2 in CRC.
Main Methods:
- Detected BATF2 translocation and clinical relevance in CRC samples, cell lines, and xenografts.
- Identified BATF2-binding proteins using co-immunoprecipitation and mass spectrometry.
- Utilized recombinant plasmids, mutations, and siRNAs to study BATF2-CRM1 interactions.
Main Results:
- BATF2 is primarily localized in the cytoplasm of CRC cells, inversely correlating with patient prognosis.
- Nuclear export of BATF2, mediated by its nuclear export sequence (NES) and CRM1, leads to its degradation and promotes CRC growth.
- Inhibition of BATF2 nuclear export (via NES mutation or CRM1 knockdown) retards CRC progression.
Conclusions:
- Cytoplasmic localization of BATF2 enhances CRC growth through the AP-1/cyclin D1/pRb pathway.
- Targeting BATF2 nuclear export presents a potential therapeutic strategy for colorectal cancer.
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