Scientific article
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English

The Dynamic Range of Acidity: Tracking Rules for the Unidirectional Penetration of Cellular Compartments

Published inChemBioChem, vol. 23, no. 15, e202200192
Publication date2022-08-03
First online date2022-05-10
Abstract

Labeled ammonium cations with pKa∼7.4 accumulate in acidic organelles because they can be neutralized transiently to cross the membrane at cytosolic pH 7.2 but not at their internal pH<5.5. Retention in early endosomes with less acidic internal pH was achieved recently using weaker acids of up to pKa 9.8. We report here that primary ammonium cations with higher pKa 10.6, label early endosomes more efficiently. This maximized early endosome tracking coincides with increasing labeling of Golgi networks with similarly weak internal acidity. Guanidinium cations with pKa 13.5 cannot cross the plasma membrane in monomeric form and label the plasma membrane with selectivity for vesicles embarking into endocytosis. Self-assembled into micelles, guanidinium cations enter cells like arginine-rich cell-penetrating peptides and, driven by their membrane potential, penetrate mitochondria unidirectionally despite their high inner pH. The resulting tracking rules with an approximated dynamic range of pKa change ∼3.5 are expected to be generally valid, thus enabling the design of chemistry tools for biology research in the broadest sense. From a practical point of view, most relevant are two complementary fluorescent flipper probes that can be used to image the mechanics at the very beginning of endocytosis.

Keywords
  • Cell-penetrating peptides
  • Dynamic acidity
  • Early endosomes
  • PH gradients
  • Trackers
  • Transmembrane translocation
Citation (ISO format)
ASSIES, Lea et al. The Dynamic Range of Acidity: Tracking Rules for the Unidirectional Penetration of Cellular Compartments. In: ChemBioChem, 2022, vol. 23, n° 15, p. e202200192. doi: 10.1002/cbic.202200192
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Article (Published version)
Identifiers
ISSN of the journal1439-4227
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Technical informations

Creation15/08/2022 07:29:00
First validation15/08/2022 07:29:00
Update time16/03/2023 07:10:40
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