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PMID: 11444806 Published · ppublish English Journal Article

Fluorescence lifetime characterization of novel low-pH probes.

Analytical biochemistry ·Vol. 294 ·No. 2 ·2001-07-15 ·Pages 118-25

Lin HJ, Herman P, Kang JS, Lakowicz JR

Abstract

The structures and functions of the cellular acidic compartments are strongly dependent on the pH gradients across vesicular membranes. Measurement and imaging of the vesicular pH require fluorophores with appropriate pK(a) values. In this report, we characterized the pH-dependent lifetime responses of a family of acidotropic probes, LysoSensors, to evaluate their usefulness to low-pH lifetime imaging. LysoSensors are cell-permeable weak bases that selectively accumulate in acidic vesicles after being protonated. They have higher quantum yields at lower pH ranges to allow visualization of the lysosomes. For LysoSensors DND-167, DND-189, and DND-153, raising the buffer pH increased the quenching effects of their basic side chains and substantially reduced their steady-state fluorescence and lifetimes. The apparent pK(a) values determined from their lifetime responses were shifted to near neutral values because of the dominant intensity contribution from their protonated species. One unique property of LysoSensor DND-189 is its nonmonotonic lifetime responses of the maxima occurring between pH 4 and 5. LysoSensor DND-192 did not show significant lifetime changes over a wide pH range. LysoSensor DND-160, which was the only excitation and emission ratiometric probe, showed significant pH-dependent lifetime changes as well as its spectral shifts. Its apparent pK(a) values determined from the lifetime responses were comparable to the lysosomal pH because of its bright basic form. Because of the pH-dependent absorption spectra, the apparent pK(a) values could be manipulated between 3 and 5 by changing the excitation and/or emission wavelengths. These results indicate that LysoSensor DND-160 is a promising probe for lifetime imaging to determine lysosomal pH.

MeSH Terms
Buffers Fluorescent Dyes/chemistry,metabolism Hydrogen-Ion Concentration Molecular Structure Spectrometry, Fluorescence/methods Transport Vesicles/chemistry,metabolism
Chemicals
Buffers Fluorescent Dyes
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Lin H J
Center for Fluorescence Spectroscopy, Department of Biochemistry and Molecular Biology, University of Maryland, 725 West Lombard Street, Baltimore, Maryland 21201, USA
Herman P
Kang J S
Lakowicz J R
References (21)
21 references, click to expand
  1. A novel acidotropic pH indicator and its potential application in labeling acidic organelles of live cells.
    Chem Biol. 1999 Jul;6(7):411-8 PMID: 10381401
  2. Vesicular anthracycline accumulation in doxorubicin-selected U-937 cells: participation of lysosomes.
    Blood. 1997 May 15;89(10):3745-54 PMID: 9160680
  3. Activity of the multidrug transporter results in alkalinization of the cytosol: measurement of cytosolic pH by microinjection of a pH-sensitive dye.
    J Histochem Cytochem. 1990 May;38(5):685-90 PMID: 1692055
  4. Bafilomycin A1, a specific inhibitor of vacuolar-type H(+)-ATPase, inhibits acidification and protein degradation in lysosomes of cultured cells.
    J Biol Chem. 1991 Sep 15;266(26):17707-12 PMID: 1832676
  5. Synaptic vesicle recycling in cultured cerebellar granule cells: role of vesicular acidification and refilling.
    J Neurochem. 1997 Nov;69(5):1927-35 PMID: 9349537
  6. Defective acidification in human breast tumor cells and implications for chemotherapy.
    J Exp Med. 1998 May 18;187(10):1583-98 PMID: 9584137
  7. Construction and performance of a variable-frequency phase-modulation fluorometer.
    Biophys Chem. 1985 Jan;21(1):61-78 PMID: 3971026
  8. Depth penetration and detection of pH gradients in biofilms by two-photon excitation microscopy.
    Appl Environ Microbiol. 1999 Aug;65(8):3502-11 PMID: 10427041
  9. Lifetime-based pH sensors: indicators for acidic environments.
    Anal Biochem. 1999 Apr 10;269(1):162-7 PMID: 10094788
  10. Defective pH regulation of acidic compartments in human breast cancer cells (MCF-7) is normalized in adriamycin-resistant cells (MCF-7adr).
    Biochemistry. 1996 Mar 5;35(9):2811-7 PMID: 8608115
  11. Intracellular pH and the control of multidrug resistance.
    Proc Natl Acad Sci U S A. 1994 Feb 1;91(3):1128-32 PMID: 8302842
  12. Optical measurements of pH using fluorescence lifetimes and phase-modulation fluorometry.
    Anal Chem. 1993 Jul 1;65(13):1668-74 PMID: 8368522
  13. Cutting edge: signals from the B lymphocyte antigen receptor regulate MHC class II containing late endosomes.
    J Immunol. 1998 Jun 1;160(11):5203-8 PMID: 9605114
  14. Selective perturbation of early endosome and/or trans-Golgi network pH but not lysosome pH by dose-dependent expression of influenza M2 protein.
    J Biol Chem. 1999 Apr 2;274(14):9854-60 PMID: 10092677
  15. Kinetics of doxorubicin handling in the LLC-PK1 kidney epithelial cell line is mediated by both vesicle formation and P-glycoprotein drug transport.
    Histochem J. 1999 Oct;31(10):635-43 PMID: 10576412
  16. Characterization of p-bis(O-methylstyryl)benzene as a lifetime and anisotropy decay standard for two-photon induced fluorescence.
    Biophys Chem. 1993 Jul;47(1):1-7 PMID: 8364146
  17. Characterization of acidic vesicles in multidrug-resistant and sensitive cancer cells by acridine orange staining and confocal microspectrofluorometry.
    J Histochem Cytochem. 1997 Sep;45(9):1255-64 PMID: 9283613
  18. Cytoplasmic dynein contains a family of differentially expressed light chains.
    Biochemistry. 1998 Oct 27;37(43):15033-41 PMID: 9790665
  19. Are altered pHi and membrane potential in hu MDR 1 transfectants sufficient to cause MDR protein-mediated multidrug resistance?
    J Gen Physiol. 1996 Oct;108(4):295-313 PMID: 8894978
  20. Functional dissection of COP-I subunits in the biogenesis of multivesicular endosomes.
    J Cell Biol. 1997 Dec 1;139(5):1183-95 PMID: 9382865
  21. Tamoxifen inhibits acidification in cells independent of the estrogen receptor.
    Proc Natl Acad Sci U S A. 1999 Apr 13;96(8):4432-7 PMID: 10200279
Article Info
Journal
Analytical biochemistry
Abbr.
Anal Biochem
ISSN
0003-2697
Published
2001-07-15
Pages
118-25
Language
English
Region
United States
NLM ID
0370535
PMCID
PMC6906608
Subset
IM
Grants
NCRR NIH HHS · P41 RR008119 · United States
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