Literature DB >> 28373603

A study of the dynamics of PTEN proteins in living cells using in vivo fluorescence correlation spectroscopy.

Zhixue Du1, Chaoqing Dong, Jicun Ren.   

Abstract

PTEN (phosphatase and tensin homolog on chromosome 10) is one of the most important tumor-suppressor proteins, which plays a key role in negative regulation of the PI3K/AKT pathway, and governs many cellular processes including growth, proliferation, survival and migration. The dynamics of PTEN proteins in single living cells is as yet unclear owing to a shortage of suitable in vivo approaches. Here, we report a single-molecule method for in vivo study of the dynamics of PTEN proteins in living cells using fluorescence correlation spectroscopy (FCS). First, we established a monoclonal H1299 stable cell line expressing enhanced green fluorescent protein (EGFP) and PTEN (EGFP-PTEN) fusion proteins; we then developed an in vivo FCS method to study the dynamics of EGFP-PTEN both in the nucleus and the cytoplasm. We investigated the diffusion behaviors of EGFP and EGFP-PTEN in solution, nucleus and cytosol, and observed that the motion of PTEN in living cells was restricted compared with EGFP. Finally, we investigated the protein dynamics in living cells under oxidative stress stimulation and a cellular ATP depletion treatment. Under oxidative stress stimulation, the EGFP-PTEN concentration increased in the nucleus, but slightly decreased in the cytoplasm. The diffusion coefficient and alpha value of EGFP-PTEN reduced significantly both in the nucleus and cytoplasm; the significantly decreased alpha parameter indicates a more restricted Brownian diffusion behavior. Under the cellular ATP depletion treatment, the concentration of EGFP-PTEN remained unchanged in the nucleus and decreased significantly in cytosol. The diffusion coefficient of EGFP-PTEN decreased significantly in cytosol, but showed no significant change in the nucleus; the alpha value decreased significantly in both the nucleus and cytoplasm. These results suggest that the concentration and mobility of PTEN in the nucleus and cytoplasm can be regulated by stimulation methods. Our approach provides a unique method for real-time monitoring of protein dynamics in different subcellular compartments under different stimulation treatments.

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Year:  2017        PMID: 28373603     DOI: 10.1088/2050-6120/aa6b07

Source DB:  PubMed          Journal:  Methods Appl Fluoresc        ISSN: 2050-6120            Impact factor:   3.009


  3 in total

1.  Fluorescence Correlation Spectroscopy with Photobleaching Correction in Slowly Diffusing Systems.

Authors:  Cameron Hodges; Rudra P Kafle; J Damon Hoff; Jens-Christian Meiners
Journal:  J Fluoresc       Date:  2018-01-24       Impact factor: 2.217

2.  Determination of oligomerization state of Drp1 protein in living cells at nanomolar concentrations.

Authors:  Karina Kwapiszewska; Tomasz Kalwarczyk; Bernadeta Michalska; Krzysztof Szczepański; Jędrzej Szymański; Paulina Patalas-Krawczyk; Tomasz Andryszewski; Michalina Iwan; Jerzy Duszyński; Robert Hołyst
Journal:  Sci Rep       Date:  2019-04-11       Impact factor: 4.379

3.  Nanoscale Viscosity of Cytoplasm Is Conserved in Human Cell Lines.

Authors:  Karina Kwapiszewska; Krzysztof Szczepański; Tomasz Kalwarczyk; Bernadeta Michalska; Paulina Patalas-Krawczyk; Jędrzej Szymański; Tomasz Andryszewski; Michalina Iwan; Jerzy Duszyński; Robert Hołyst
Journal:  J Phys Chem Lett       Date:  2020-08-11       Impact factor: 6.475

  3 in total

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