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A pH-correctable, DNA-based fluorescent reporter for organellar calcium.


ABSTRACT: It is extremely challenging to quantitate lumenal Ca2+ in acidic Ca2+ stores of the cell because all Ca2+ indicators are pH sensitive, and Ca2+ transport is coupled to pH in acidic organelles. We have developed a fluorescent DNA-based reporter, CalipHluor, that is targetable to specific organelles. By ratiometrically reporting lumenal pH and Ca2+ simultaneously, CalipHluor functions as a pH-correctable Ca2+ reporter. By targeting CalipHluor to the endolysosomal pathway, we mapped lumenal Ca2+ changes during endosomal maturation and found a surge in lumenal Ca2+ specifically in lysosomes. Using lysosomal proteomics and genetic analysis, we found that catp-6, a Caenorhabditis elegans homolog of ATP13A2, was responsible for lysosomal Ca2+ accumulation-an example of a lysosome-specific Ca2+ importer in animals. By enabling the facile quantification of compartmentalized Ca2+, CalipHluor can expand the understanding of subcellular Ca2+ importers.

SUBMITTER: Narayanaswamy N 

PROVIDER: S-EPMC7107693 | biostudies-literature | 2019 Jan

REPOSITORIES: biostudies-literature

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A pH-correctable, DNA-based fluorescent reporter for organellar calcium.

Narayanaswamy Nagarjun N   Chakraborty Kasturi K   Saminathan Anand A   Zeichner Elizabeth E   Leung KaHo K   Devany John J   Krishnan Yamuna Y  

Nature methods 20181210 1


It is extremely challenging to quantitate lumenal Ca<sup>2+</sup> in acidic Ca<sup>2+</sup> stores of the cell because all Ca<sup>2+</sup> indicators are pH sensitive, and Ca<sup>2+</sup> transport is coupled to pH in acidic organelles. We have developed a fluorescent DNA-based reporter, CalipHluor, that is targetable to specific organelles. By ratiometrically reporting lumenal pH and Ca<sup>2+</sup> simultaneously, CalipHluor functions as a pH-correctable Ca<sup>2+</sup> reporter. By targeting  ...[more]

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