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Updated: Dec 25, 2025

Detection and Isolation of Apoptotic Bodies to High Purity
Published on: August 12, 2018
Immunohistochemical detection of the pro-apoptotic Bax∆2 protein in human tissues
Adriana Mañas1, Qi Yao1, Aislinn Davis1
1Department of Biology, Illinois Institute of Technology, 3101 South Dearborn Street, Chicago, IL, 60616, USA.
Abstract:
The pro-apoptotic Bax isoform Bax∆2 was originally discovered in cancer patients with a microsatellite guanine deletion (G8 to G7). This deletion leads to an early stop codon; however, when combined with the alternative splicing of exon 2, the reading frame is restored allowing production of a full-length protein (Bax∆2). Unlike the parental Baxα, Bax∆2 triggers apoptosis through a non-mitochondrial pathway and the expression in human tissues was unknown. Here, we analyzed over 1000 tissue microarray samples from 13 different organs using immunohistochemistry. Bax∆2-positive cells were detected in all examined organs at low rates (1-5%) and mainly scattered throughout the connective tissues. Surprisingly, over 70% of normal colon samples scored high for BaxΔ2-positive staining. Only 7% of malignant colon samples scored high, with most high-grade tumors being negative. A similar pattern was observed in most organs examined. We also showed that both Baxα and Bax∆2 can co-exist in the same cells. Genotyping showed that the majority of Bax∆2-positive normal tissues contain no G7 mutation, but an unexpected high rate of G9 was observed. Although the underlying mechanism remains to be explored, the inverse correlation of Bax∆2 expression with tissue malignancy suggests that it may have a clinical implication in cancer development and treatment.
Insights
The pro-apoptotic Bax∆2 protein, linked to cancer, is found in normal human tissues, not tumors. Its expression inversely correlates with malignancy, suggesting potential clinical implications for cancer treatment.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- The pro-apoptotic Bax isoform, Bax∆2, arises from a guanine deletion and alternative splicing, producing a full-length protein.
- Bax∆2 induces apoptosis via a non-mitochondrial pathway, distinct from the parental Baxα isoform.
Purpose of the Study:
- To investigate the expression and distribution of Bax∆2 in normal human tissues.
- To explore the relationship between Bax∆2 expression and tissue malignancy, particularly in colon cancer.
Main Methods:
- Immunohistochemistry was used to analyze over 1000 tissue microarray samples from 13 human organs.
- Genotyping was performed on Bax∆2-positive tissues to identify underlying mutations.
Main Results:
- Bax∆2-positive cells were detected in all examined organs at low levels (1-5%), primarily in connective tissues.
- Normal colon tissues showed high Bax∆2 expression (over 70%), while malignant colon samples had low expression (7%).
- Baxα and Bax∆2 can coexist in the same cells; G9 mutation was unexpectedly frequent in Bax∆2-positive normal tissues.
Conclusions:
- Bax∆2 is expressed in normal human tissues, with a notable high prevalence in normal colon.
- The inverse correlation between Bax∆2 expression and malignancy suggests a potential role in cancer development and therapeutic strategies.
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