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Optimized solubilization of TRIzol-precipitated protein permits Western blotting analysis to maximize data available from brain tissue.

Publication ,  Journal Article
Kopec, AM; Rivera, PD; Lacagnina, MJ; Hanamsagar, R; Bilbo, SD
Published in: Journal of Neuroscience Methods
March 2017

Techniques simultaneously assessing multiple levels of molecular processing are appealing because molecular signaling underlying complex neural phenomena occurs at complementary levels. The TRIzol method isolates RNA and DNA, but protein retrieval is difficult due to inefficient solubilization of precipitated protein pellets.We optimized a buffer for the efficient solubilization of protein from TRIzol-precipitated brain tissue for Western blotting analysis, which was also more effective at directly homogenizing brain tissue than RIPA buffer.Protein yield during solubilization, in addition to protein yield via direct homogenization, is increased by optimizing concentrations of chemicals in a standard lysis buffer. Effective incubation parameters for both total protein yield and the analysis of post-translational modifications is remarkably flexible. Importantly, different neural cell types and protein classes are represented in solubilized protein samples. Moreover, we used dissociated mouse brain tissue to isolate microglia from other cell types and successfully resolved cell type-specific proteins from these small and difficult to attain samples.Solubilization buffers to date have been comprised primarily of SDS or urea; the data herein demonstrate that components common to lysis buffers can also enhance protein solubilization both after direct homogenization and after precipitation.This method is suitable for assessing gene and protein expression from a single brain sample, allowing for a more comprehensive evaluation of neural phenomena while minimizing the number of subjects.

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Published In

Journal of Neuroscience Methods

DOI

EISSN

1872-678X

ISSN

0165-0270

Publication Date

March 2017

Volume

280

Start / End Page

64 / 76

Related Subject Headings

  • Time Factors
  • Temperature
  • Solubility
  • Sodium Dodecyl Sulfate
  • Sodium Chloride
  • Rats, Sprague-Dawley
  • Proteins
  • Phenols
  • Neurons
  • Neurology & Neurosurgery
 

Citation

APA
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ICMJE
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Kopec, A. M., Rivera, P. D., Lacagnina, M. J., Hanamsagar, R., & Bilbo, S. D. (2017). Optimized solubilization of TRIzol-precipitated protein permits Western blotting analysis to maximize data available from brain tissue. Journal of Neuroscience Methods, 280, 64–76. https://doi.org/10.1016/j.jneumeth.2017.02.002
Kopec, Ashley M., Phillip D. Rivera, Michael J. Lacagnina, Richa Hanamsagar, and Staci D. Bilbo. “Optimized solubilization of TRIzol-precipitated protein permits Western blotting analysis to maximize data available from brain tissue.Journal of Neuroscience Methods 280 (March 2017): 64–76. https://doi.org/10.1016/j.jneumeth.2017.02.002.
Kopec AM, Rivera PD, Lacagnina MJ, Hanamsagar R, Bilbo SD. Optimized solubilization of TRIzol-precipitated protein permits Western blotting analysis to maximize data available from brain tissue. Journal of Neuroscience Methods. 2017 Mar;280:64–76.
Kopec, Ashley M., et al. “Optimized solubilization of TRIzol-precipitated protein permits Western blotting analysis to maximize data available from brain tissue.Journal of Neuroscience Methods, vol. 280, Mar. 2017, pp. 64–76. Epmc, doi:10.1016/j.jneumeth.2017.02.002.
Kopec AM, Rivera PD, Lacagnina MJ, Hanamsagar R, Bilbo SD. Optimized solubilization of TRIzol-precipitated protein permits Western blotting analysis to maximize data available from brain tissue. Journal of Neuroscience Methods. 2017 Mar;280:64–76.
Journal cover image

Published In

Journal of Neuroscience Methods

DOI

EISSN

1872-678X

ISSN

0165-0270

Publication Date

March 2017

Volume

280

Start / End Page

64 / 76

Related Subject Headings

  • Time Factors
  • Temperature
  • Solubility
  • Sodium Dodecyl Sulfate
  • Sodium Chloride
  • Rats, Sprague-Dawley
  • Proteins
  • Phenols
  • Neurons
  • Neurology & Neurosurgery