| Literature DB >> 31337683 |
Chenguang Wang1, Masayasu Taki2,3, Yoshikatsu Sato1, Yasushi Tamura4, Hideyuki Yaginuma5, Yasushi Okada6,7,8,9, Shigehiro Yamaguchi2,10,11.
Abstract
Stimulation emission depletion (STED) microscopy enables ultrastructural imaging of organelle dynamics with a high spatiotemporal resolution in living cells. For the visualization of the mitochondrial membrane dynamics in STED microscopy, rationally designed mitochondrial fluorescent markers with enhanced photostability are required. Herein, we report the development of a superphotostable fluorescent labeling reagent with long fluorescence lifetime, whose design is based on a structurally reinforced naphthophosphole fluorophore that is conjugated with an electron-donating diphenylamino group. The combination of long-lived fluorescence and superphotostable features of the fluorophore allowed us to selectively capture the ultrastructures of the mitochondrial cristae with a resolution of ∼60 nm when depleted at 660 nm. This chemical tool provides morphological information of the cristae, which has so far only been observed in fixed cells using electron microscopy. Moreover, this method gives information about the dynamic ultrastructures such as the intermembrane fusion in different mitochondria as well as the intercristae mergence in a single mitochondrion during the apoptosis-like mitochondrial swelling process.Entities:
Keywords: STED microscopy; fluorescence probe; live-cell imaging; mitochondrial cristae; superresolution
Year: 2019 PMID: 31337683 PMCID: PMC6689947 DOI: 10.1073/pnas.1905924116
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205