Super-Resolution Tracking of Mitochondrial Dynamics with An Iridium(III) Luminophore
SMALL
Authors: Chen, Qixin; Jin, Chengzhi; Shao, Xintian; Guan, Ruilin; Tian, Zhiqi; Wang, Chenran; Liu, Fei; Ling, Peixue; Guan, Jun-Lin; Ji, Liangnian; Wang, Fengshan; Chao, Hui; Diao, Jiajie
Abstract
Combining luminescent transition metal complex with super-resolution microscopy is an excellent strategy for the long-term visualization of the dynamics of subcellular structures in living cells. However, it remains unclear whether iridium(III) complexes are applicable for a particular type of super-resolution technique, structured illumination microscopy (SIM), to image subcellular structures. Herein, an iridium(III) dye, to track mitochondrial dynamics in living cells under SIM is described. The dye demonstrates excellent specificity and photostability and satisfactory cell permeability. While using SIM to image mitochondria, an approximate to 80 nm resolution is achieved that allows the clear observation of the structure of mitochondrial cristae. The dye is used to monitor and quantify mitochondrial dynamics relative to lysosomes, including fusion involved in mitophagy, and newly discovered mitochondria-lysosome contact (MLC) under different conditions. The MLC remains intact and fusion vanishes when five receptors, p62, NDP52, OPTN, NBR1, and TAX1BP1, are knocked out, suggesting that these two processes are independent.
A close connection between the PERK and IRE arms of the UPR and the transcriptional regulation of autophagy
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS
Authors: Deegan, Shane; Koryga, Izabela; Glynn, Sharon A.; Gupta, Sanjeev; Gorman, Adrienne M.; Samali, Afshin
Abstract
Endoplasmic reticulum (ER) stress is known to lead to activation of both the unfolded protein response (UPR) and autophagy. Although regulatory connections have been identified between the UPR and autophagy, it is still unclear to what extent the UPR regulates the genes involved at the different stages of the autophagy pathway. Here, we carried out a microarray analysis of HCT116 cells subjected to ER stress and observed the transcriptional upregulation of a large cohort of autophagy-related genes. Of particular interest, we identified the transcriptional upregulation of the autophagy receptor genes SQSTM1/p62, NBR1 and BNIP3L/NIX in response to ER stress and show that the inhibition of the UPR transmembrane receptors, PERK and IRE1, abrogates this upregulation. (C) 2014 Elsevier Inc. All rights reserved.