Published November 2019 | Version v1
Journal article

Mechanism of VIPR1 gene regulating human lung adenocarcinoma H1299 cells

  • 1. Zhejiang University School of Medicine, Department of Thoracic Surgery, Second Affiliated Hospital (China)

Description

The vasoactive intestinal peptide receptor-1(VIPR1) has prominent growth effects on a number of common neoplasms. However, there were contradictions in the effect cross different cancers. We aimed to explore the effect of VIPR1 overexpression on a human lung adenocarcinoma cell line H1299. GEO dataset was used to screen differentially expressed genes in lung adenocarcinoma tissues. The expression of VIPR1 mRNA was determined in the cancer Genome Atlas (TCGA). Immunohistochemical analysis was performed to determine VIPR1 protein expression in lung adenocarcinoma and corresponding adjacent tissues (n = 22). Fluorescence real-time quantitative PCR detected the expression of VIPR1 in human normal lung epithelial cell line BEAS-2B and lung adenocarcinoma cell line H1299. Overexpression strategies were employed to assess functions of VIPR1 expression on several malignant phenotypes in H1299. The expression of VIPR1 was lower in lung adenocarcinoma tissues than that in adjacent tissues. Compared with the normal lung epithelial cells BEAS-2B, VIPR1 was down-regulated in lung cancer cells H1299 (P < 0.05). After the overexpression of VIPR1, we found that VIPR1 significantly inhibited growth, migration, and invasion of H1299 cells (P < 0.05). Our findings point out the tumor suppressor roles of VIPR1 in human LUAD pathogenesis.

Additional details

Identifiers

Publishing Information

Journal Title
Medical Oncology (Online)
Journal Volume
36
Journal Issue
11
Journal Page Range
p. 1-7
ISSN
1559-131X

INIS

Country of Publication
United States
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
51102434
Subject category
S62: RADIOLOGY AND NUCLEAR MEDICINE;
Descriptors DEI
CARCINOMAS; FLUORESCENCE; LUNGS; MESSENGER-RNA; PATHOGENESIS; PEPTIDES; PHENOTYPE; POLYMERASE CHAIN REACTION; RECEPTORS
Descriptors DEC
BODY; DISEASES; EMISSION; GENE AMPLIFICATION; LUMINESCENCE; MEMBRANE PROTEINS; NEOPLASMS; NUCLEIC ACIDS; ORGANIC COMPOUNDS; ORGANS; PHOTON EMISSION; PROTEINS; RESPIRATORY SYSTEM; RNA

Optional Information

Copyright
Copyright (c) 2019 Springer Science+Business Media, LLC, part of Springer Nature
Notes
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