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Characteristics of AccSTIP1 in Apis cerana cerana and its role during oxidative stress responses. | LitMetric

Characteristics of AccSTIP1 in Apis cerana cerana and its role during oxidative stress responses.

Cell Stress Chaperones

State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Taian, Shandong, 271018, People's Republic of China.

Published: November 2018

AI Article Synopsis

  • Various environmental stresses like heat, heavy metals, and pesticides trigger a cellular oxidative stress response, primarily regulated by heat shock proteins (Hsps) and co-chaperones like Stress-induced phosphoprotein 1 (STIP1).
  • In this study, AccSTIP1 was identified in honeybees, showing increased transcription levels when exposed to heat, certain heavy metals, and specific pesticides, while being inhibited by others such as UV radiation.
  • The study found that AccSTIP1 plays a crucial role in reducing oxidative stress, with RNA interference experiments indicating that its knockdown leads to lower levels of antioxidation-related gene expression in honeybees.

Article Abstract

Various environmental stresses, such as heat shock, heavy metals, ultraviolet (UV) radiation and different pesticides, induce a cellular oxidative stress response. The cellular oxidative stress response is usually regulated by heat shock proteins (Hsps) acting as molecular chaperones. Stress-induced phosphoprotein 1 (STIP1), one of the most widely studied co-chaperones, functions as an adaptor that directs Hsp90 to Hsp70-client protein complexes. However, the biological functions of STIP1 remain poorly understood in honeybee (Apis cerana cerana). In this study, AccSTIP1 was identified in Apis cerana cerana. AccSTIP1 transcription was found to be induced by heat (42 °C), HgCl, HO and different pesticides (emamectin benzoate, thiamethoxam, hexythiazox and paraquat) and inhibited by CdCl, UV and kresoxim-methyl. Moreover, western blot analysis indicated that the expression profiles of AccSTIP1 were consistent with its transcriptional expression levels. The disc diffusion assay showed that chemically competent transetta (DE3) bacteria expressing a recombinant AccSTIP1 protein displayed the smaller death zones than did control bacteria after exposure to paraquat and HgCl. The DNA nicking assay suggested that recombinant purified AccSTIP1 protected supercoiled pUC19 plasmid DNA from damage caused by a thiol-dependent mixed-function oxidation (MFO) system. After knocking down AccSTIP1 gene expression via RNA interference (RNAi), the transcript levels of antioxidation-related genes were obviously lower in dsAccSTIP1 honeybees compared with those in the uninjected honeybees. Collectively, these results demonstrated that AccSTIP1 plays an important role in counteracting oxidative stress. This study lays a foundation for revealing the mechanism of AccSTIP1 in the Apis cerana cerana antioxidant system.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6237692PMC
http://dx.doi.org/10.1007/s12192-018-0920-3DOI Listing

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