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Detection of ROS and translocation of ERP-57 in apoptotic induced human neuroblastoma (SH-SY5Y) cells
Authors:Atif Kamil  Mubarak Ali Khan  Muhammad AAsim  Nadir Zaman Khan  Raham Sher Khan  Muhsin Jamal  Waqar Ahmad  Mir Azam Khan  Fazal Jalil
Affiliation:1Department of Biotechnology, Abdul Wali Khan University Mardan (AWKUM), Garden Campus, Toru Road, Mardan, KPK, Pakistan 2Department of Biotechnology, University of Malakand (UOM), Chakdara, Lower Dir, Pakistan 3Department of Microbiology, Abdul Wali Khan University Mardan (AWKUM), Garden Campus, Toru Road, Mardan, KPK, Pakistan 4Department of Pharmacy, University of Malakand (UOM), Chakdara, Lower Dir, Pakistan
Abstract:Several toxic compounds are known to induce apoptosis in mammalian cell lines. The human neuroblastomacells (SH-SY5Y) were exposed to the phosphatase inhibiting toxin okadaic acid (OA) or hydrogen peroxide (H2O2)to induce apoptosis as well as generate reactive oxygen species (ROS). Mitoxantrone (MXT) was used as a positivecontrol for apoptosis. The SH-SY5Y cells were transfected with eukaryotic expression plasmid pHyPer-dMito encodingmitochondrial-targeted fluorescent or pHyPer-dCito encoding cytoplasmic-targeted fluorescent sensor for hydrogenperoxide (HyPer). The ERp57, also called GRP58 (Glucose-regulated protein 58), is a stress protein induced inconditions like glucose starvation and viral infection. Recently ERp57 was shown to translocate from the endoplasmaticreticulum to the cell surface in anthracycline-induced apoptotic cells. ERp57 co-translocation together with calreticulinhas been suggested to be crucial for recognizing tumor cells to induce immunogenic cell death. ERp57 translocationafter exposure to okadaic acid was studied using immunofluorescence and confocal microscopy. These studies indicatedthat okadaic acid has induced the translocation of ERp57 to the cellular membrane.
Keywords:Apoptosis   Cytoplasm   Endoplasmic recticulum (ER)   ERP-57   Human neuroblastoma cell (SH-SY5Y)   Immunofluorescence   Mitochondria   Reactive oxygen species (ROS)   Transfection
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