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.

Cancers
|February 6, 2019
PubMed

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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