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Romanian Academy
The Publishing House of the Romanian Academy
ACTA ENDOCRINOLOGICA (BUC)
The International Journal of Romanian Society of Endocrinology / Registered in 1938in Web of Science Master Journal List
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Acta Endocrinologica (Buc)
Li Z, Sun B, Qi P
FTO Overexpression Pprotects Pancreatic ß-cells from Palmitate-Induced Apoptosis by Preventing Activation of the Unfolded Protein Response
Acta Endo (Buc) 2015, 11 (4): 436-443doi: 10.4183/aeb.2015.436
Background. Saturated free fatty acids, such as
palmitate, can cause pancreatic β-cell apoptosis. Although
the toxicity of palmitate could be mediated partly through
endoplasmic reticulum (ER) stress, the mechanism by
which fatty acid over-accumulation led to lipoapoptosis
in β-cells has not been fully understood. Recently, the fat
mass and obesity associated (FTO) gene is proved to be
related to obesity and type 2 diabetes, but its function in
β-cells remains largely unknown. Whether or not FTO could
counteract palmitate induced β-cell apoptosis remains to be
investigated.
Methods. INS-1 cells were infected with FTO
expression adenovirus and incubated with palmitate. Then,
viability and induction of apoptosis were measured by
MTT assay and Hoechst-staining, respectively. Western
blot analyses were performed for unfolded protein response
specific proteins and mRNA expression of target molecules
was determined by real time-PCR.
Results. Palmitate incubation led to β-cell apoptosis,
whereas adenovirus-mediated FTO overexpression
significantly ameliorated the effect of palmitate. Increased
activation of X-box binding protein 1 (Xbp1) mRNA and
phosphorylation of eIF2α were also observed after palmitate
treatment, whereas FTO overexpression significantly
ameliorated the effect of palmitate. The proapoptotic
transcription factor CHOP was significantly enhanced
by palmitate incubation. In contrast, in accordance with
sustained cell survival, FTO overexpression resulted in
notably decreased CHOP levels. Interestingly, mRNA
expression of the chaperones Pdi, Calnexin and Grp94 was
not altered by palmitate treatment, while FTO overexpression
notably increased the expression of Bip.
Conclusion. Our data showed that FTO
overexpression could protect β-cells from palmitate-induced
apoptosis partly through suppression of ER stress.
Keywords: free fatty acid, palmitate, apoptosis, unfolded protein responses, FTO.
Correspondence: Zhenjie Li, Linyi People’s Hospital, Department of Endocrinology, Jiefang East Road 27, Linyi, 276003, China, E-mail: zhenjieli1981@126.com