| Literature DB >> 33435798 |
Yilong Shi1, Xiaoxue Zou2, Shixiong Wen1, Lei Gao2, Jian Li2, Jiahuai Han1, Shoufa Han2.
Abstract
Dysfunctional organelles and defective turnover of organelles are engaged in multiple human diseases, but are elusive to image with conventional organelle probes. To overcome this, we developed intra-mitochondrial CLICK to assess mitophagy (IMCLAM), using a pair of conventional ΔΨm probes, where each probe alone fails to track dysfunctional mitochondria. The in situ formed optical triad is stably trapped in mitochondria without resorting to ΔΨm. Utilizing an acidity-responsive ΔΨm probe, IMCLAM enabled fluorescence-on detection of mitophagy by sensing pH acidification upon delivery of mitochondria into lysosomes. Moreover, we applied IMCLAM to assay mitophagy induced by pharmacological compounds in living cells and wild-type zebrafish embryos. Thus, IMCLAM offers a simplified tool to study mitochondria and mitophagy and provide a basis for screening mitophagy-inducing compounds. Abbreviations: CCCP, carbonyl cyanide m-chlorophenylhydrazone; IMCLAM, intra-mitochondrial CLICK to assess mitophagy; ROX, X-rhodamine; SPAAC, stain-promoted azide-alkyne Click Chemistry; TPP, triphenylphosphonium.Entities:
Keywords: Bioorthogonal reaction; dysfunctional organelle; fluorescence-on imaging; mitophagy; mitophagy inducer
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Year: 2021 PMID: 33435798 PMCID: PMC8632332 DOI: 10.1080/15548627.2021.1875597
Source DB: PubMed Journal: Autophagy ISSN: 1554-8627 Impact factor: 16.016