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Lung Tumorigenesis Alters the Expression of Slit2-exon15 Splicing Variants in Tumor Microenvironment
Ming-Fang Wu1,2, Cheng-Yen Chuang3, Pinpin Lin4
1School of Medicine, Chung Shan Medical University, Taichung 40201, Taiwan. mfwu0111@gmail.com.
Abstract:
Slit2 expression is downregulated in various cancers, including lung cancer. We identified two Slit2 splicing variants at exon15-Slit2-WT and Slit2-ΔE15. In the RT-PCR analyses, the Slit2-WT isoform was predominantly expressed in all the lung cancer specimens and in their normal lung counterparts, whereas Slit2-ΔE15 was equivalently or predominantly expressed in 41% of the pneumothorax specimens. A kRasG12D transgenic mice system was used to study the effects of tumorigenesis on the expressions of the Slit2-exon15 isoforms. The results revealed that a kRasG12D-induced lung tumor increased the Slit2-WT/Slit2-ΔE15 ratio and total Slit2 expression level. However, the lung tumors generated via a tail vein injection of lung cancer cells decreased the Slit2-WT/Slit2-ΔE15 ratio and total Slit2 expression level. Interestingly, the lipopolysaccharide (LPS)-induced lung inflammation also decreased the Slit2-WT/Slit2-ΔE15 ratio. Since Slit2 functions as an anti-inflammatory factor, the expression of Slit2 increases in kRasG12D lungs, which indicates that Slit2 suppresses immunity during tumorigenesis. However, an injection of lung cancer cells via the tail vein and the LPS-induced lung inflammation both decreased the Slit2 expression. The increased Slit2 in the tumor microenvironment was mostly Slit2-WT, which lacks growth inhibitory activity. Thus, the results of our study suggested that the upregulation of Slit2-WT, but not Slit2-ΔE15, in a cancer microenvironment is an important factor in suppressing immunity while not interfering with cancer growth.
Insights
Slit2 expression, particularly the Slit2-WT isoform, increases in certain lung cancers, suppressing immunity without hindering tumor growth. This contrasts with other lung conditions that decrease Slit2 levels.
Area of Science:
- Molecular Biology
- Cancer Research
- Immunology
Background:
- Slit2 expression is often reduced in cancers, including lung cancer.
- Two key Slit2 splicing variants, Slit2-WT and Slit2-ΔE15, were identified.
- Slit2 is known to possess anti-inflammatory properties.
Purpose of the Study:
- To investigate the differential expression of Slit2-WT and Slit2-ΔE15 in lung cancer and related conditions.
- To elucidate the role of Slit2 isoforms in lung tumorigenesis and inflammation.
- To understand how Slit2 influences the tumor microenvironment and immune response.
Main Methods:
- RT-PCR analysis of Slit2 isoforms in lung cancer and pneumothorax specimens.
- Utilizing a kRasG12D transgenic mouse model for studying tumorigenesis.
- Employing tail vein injection of lung cancer cells and LPS-induced inflammation models in mice.
Main Results:
- Slit2-WT was predominantly expressed in lung cancer and normal lung tissue, while Slit2-ΔE15 was noted in pneumothorax.
- kRasG12D-induced tumors showed increased Slit2-WT/Slit2-ΔE15 ratio and total Slit2.
- Lung cancer cell injection and LPS-induced inflammation decreased the Slit2-WT/Slit2-ΔE15 ratio and total Slit2 expression.
Conclusions:
- Upregulation of Slit2-WT in the tumor microenvironment suppresses immunity but does not impede cancer growth.
- The Slit2-WT isoform, prevalent in tumors, lacks growth inhibitory activity.
- Differential regulation of Slit2 isoforms plays a critical role in lung cancer progression and immune evasion.
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