From Proteomic Analysis to Potential Therapeutic Targets: Functional Profile of Two Lung Cancer Cell Lines, A549 and SW900, Widely Studied in Pre-Clinical Research.

PLoS One

Cancer Cell Biology Research Group, Department of Pathology and Experimental Therapeutics, Faculty of Medicine, University of Barcelona, Campus Bellvitge, Feixa Llarga s/n, 08907, L'Hospitalet de Llobregat, Spain.

Published: June 2017

AI Article Synopsis

  • Lung cancer is the leading cause of cancer deaths globally, making the study of its molecular mechanisms and drug sensitivity crucial for treatment research.
  • Using label-free mass spectrometry, researchers analyzed the proteomic profiles of two lung cancer cell lines: A549 (adenocarcinoma) and SW900 (squamous carcinoma), revealing distinct protein expressions related to cellular functions and cancer processes.
  • The findings suggest that adenocarcinoma may respond better to specific inhibitors, while squamous carcinoma has different therapeutic targets, with certain proteins identified as promising candidates for further therapeutic development.

Article Abstract

Lung cancer is a serious health problem and the leading cause of cancer death worldwide. The standard use of cell lines as in vitro pre-clinical models to study the molecular mechanisms that drive tumorigenesis and access drug sensitivity/effectiveness is of undisputable importance. Label-free mass spectrometry and bioinformatics were employed to study the proteomic profiles of two representative lung cancer cell lines and to unravel the specific biological processes. Adenocarcinoma A549 cells were enriched in proteins related to cellular respiration, ubiquitination, apoptosis and response to drug/hypoxia/oxidative stress. In turn, squamous carcinoma SW900 cells were enriched in proteins related to translation, apoptosis, response to inorganic/organic substances and cytoskeleton organization. Several proteins with differential expression were related to cancer transformation, tumor resistance, proliferation, migration, invasion and metastasis. Combined analysis of proteome and interactome data highlighted key proteins and suggested that adenocarcinoma might be more prone to PI3K/Akt/mTOR and topoisomerase IIα inhibitors, and squamous carcinoma to Ck2 inhibitors. Moreover, ILF3 overexpression in adenocarcinoma, and PCNA and NEDD8 in squamous carcinoma shows them as promising candidates for therapeutic purposes. This study highlights the functional proteomic differences of two main subtypes of lung cancer models and hints several targeted therapies that might assist in this type of cancer.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5096714PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0165973PLOS

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