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Single Cell Chemical Cytometry of Akt Activity in Rheumatoid Arthritis and Normal Fibroblast-like Synoviocytes in Response to Tumor Necrosis Factor α.

Publication ,  Journal Article
Mainz, ER; Serafin, DS; Nguyen, TT; Tarrant, TK; Sims, CE; Allbritton, NL
Published in: Anal Chem
August 2, 2016

The etiology of rheumatoid arthritis (RA) is poorly understood, and 30% of patients are unresponsive to established treatments targeting tumor necrosis factor α (TNFα). Akt kinase is implicated in TNFα signaling and may act as a barometer of patient responses to biologic therapies. Fluorescent peptide sensors and chemical cytometry were employed to directly measure Akt activity as well as proteolytic activity in individual fibroblast-like synoviocytes (FLS) from RA and normal subjects. The specificity of the peptide reporter was evaluated and shown to be a valid measure of Akt activity in single cells. The effect of TNFα treatment on Akt activity was highly heterogeneous between normal and RA subjects, which was not observable in bulk analyses. In 2 RA subjects, a bimodal distribution of Akt activity was observed, primarily due to a subpopulation (21.7%: RA Subject 5; 23.8%: RA Subject 6) of cells in which >60% of the reporter was phosphorylated. These subjects also possessed statistically elevated proteolytic cleavage of the reporter relative to normal subjects, suggesting heterogeneity in Akt and protease activity that may play a role in the RA-affected joint. We expect that chemical cytometry studies pairing peptide reporters with capillary electrophoresis will provide valuable data regarding aberrant kinase activity from small samples of clinical interest.

Duke Scholars

Published In

Anal Chem

DOI

EISSN

1520-6882

Publication Date

August 2, 2016

Volume

88

Issue

15

Start / End Page

7786 / 7792

Location

United States

Related Subject Headings

  • Tumor Necrosis Factor-alpha
  • Synoviocytes
  • Single-Cell Analysis
  • Signal Transduction
  • Receptors, Tumor Necrosis Factor, Type I
  • RNA, Small Interfering
  • RNA Interference
  • Proto-Oncogene Proteins c-akt
  • Phosphorylation
  • Morpholines
 

Citation

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MLA
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Mainz, E. R., Serafin, D. S., Nguyen, T. T., Tarrant, T. K., Sims, C. E., & Allbritton, N. L. (2016). Single Cell Chemical Cytometry of Akt Activity in Rheumatoid Arthritis and Normal Fibroblast-like Synoviocytes in Response to Tumor Necrosis Factor α. Anal Chem, 88(15), 7786–7792. https://doi.org/10.1021/acs.analchem.6b01801
Mainz, Emilie R., D Stephen Serafin, Tuong T. Nguyen, Teresa K. Tarrant, Christopher E. Sims, and Nancy L. Allbritton. “Single Cell Chemical Cytometry of Akt Activity in Rheumatoid Arthritis and Normal Fibroblast-like Synoviocytes in Response to Tumor Necrosis Factor α.Anal Chem 88, no. 15 (August 2, 2016): 7786–92. https://doi.org/10.1021/acs.analchem.6b01801.
Mainz ER, Serafin DS, Nguyen TT, Tarrant TK, Sims CE, Allbritton NL. Single Cell Chemical Cytometry of Akt Activity in Rheumatoid Arthritis and Normal Fibroblast-like Synoviocytes in Response to Tumor Necrosis Factor α. Anal Chem. 2016 Aug 2;88(15):7786–92.
Mainz, Emilie R., et al. “Single Cell Chemical Cytometry of Akt Activity in Rheumatoid Arthritis and Normal Fibroblast-like Synoviocytes in Response to Tumor Necrosis Factor α.Anal Chem, vol. 88, no. 15, Aug. 2016, pp. 7786–92. Pubmed, doi:10.1021/acs.analchem.6b01801.
Mainz ER, Serafin DS, Nguyen TT, Tarrant TK, Sims CE, Allbritton NL. Single Cell Chemical Cytometry of Akt Activity in Rheumatoid Arthritis and Normal Fibroblast-like Synoviocytes in Response to Tumor Necrosis Factor α. Anal Chem. 2016 Aug 2;88(15):7786–7792.
Journal cover image

Published In

Anal Chem

DOI

EISSN

1520-6882

Publication Date

August 2, 2016

Volume

88

Issue

15

Start / End Page

7786 / 7792

Location

United States

Related Subject Headings

  • Tumor Necrosis Factor-alpha
  • Synoviocytes
  • Single-Cell Analysis
  • Signal Transduction
  • Receptors, Tumor Necrosis Factor, Type I
  • RNA, Small Interfering
  • RNA Interference
  • Proto-Oncogene Proteins c-akt
  • Phosphorylation
  • Morpholines