Identification of the nanogold particle-induced endoplasmic reticulum stress by omic techniques and systems biology analysis.

Tsai, Yen-Yin; Huang, Yi-Huei; Chao, Ya-Li; Hu, Kuang-Yu; Chin, Li-Te; Chou, Shiu-Huey; Hour, Ai-Ling; Yao, Yeong-Der et al. · ACS Nano · 2011

basic_science · Level V

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Abstract

Growth inhibition and apoptotic/necrotic phenotype was observed in nanogold particle (AuNP)-treated human chronic myelogenous leukemia cells. To elucidate the underlying cellular mechanisms, proteomic techniques including two-dimensional electrophoresis/mass spectrometry and protein microarrays were utilized to study the differentially expressed proteome and phosphoproteome, respectively. Systems biology analysis of the proteomic data revealed that unfolded protein-associated endoplasmic reticulum (ER) stress response was the predominant event. Concomitant with transcriptomic analysis using mRNA expression, microarrays show ER stress response in the AuNP-treated cells. The ER stress protein markers' expression assay unveiled AuNPs as an efficient cellular ER stress elicitor. Upon ER stress, cellular responses, including reactive oxygen species increase, mitochondrial cytochrome c release, and mitochondria damage, chronologically occurred in the AuNP-treated cells. Conclusively, this study demonstrates that AuNPs cause cell death through induction of unmanageable ER stress.

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