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Affinity-based target deconvolution of safranal.


ABSTRACT:

Background and the purpose of the study

Affinity-based target deconvolution is an emerging method for the identification of interactions between drugs/drug candidates and cellular proteins, and helps to predict potential activities and side effects of a given compound. In the present study, we hypothesized that a part of safranal pharmacological effects, one of the major constituent of Crocus sativus L., relies on its physical interaction with target proteins.

Methods

Affinity chromatography solid support was prepared by covalent attachment of safranal to agarose beads. After passing tissue lysate through the column, safranal-bound proteins were isolated and separated on SDS-PAGE or two-dimensional gel electrophoresis. Proteins were identified using MALDI-TOF/TOF mass spectrometry and Mascot software.

Results and major conclusion

Data showed that safranal physically binds to beta actin, cytochrome b-c1 complex sub-unit 1, trifunctional enzyme sub-unit beta and ATP synthase sub-unit alpha and beta. These interactions may explain part of safranal's pharmacological effects. However, phenotypic and/or biological relevance of these interactions remains to be elucidated by future pharmacological studies.

SUBMITTER: Hosseinzadeh H 

PROVIDER: S-EPMC3614472 | biostudies-literature | 2013 Mar

REPOSITORIES: biostudies-literature

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Publications

Affinity-based target deconvolution of safranal.

Hosseinzadeh Hossein H   Mehri Soghra S   Abolhassani Mohammad Mahdi MM   Ramezani Mohammad M   Sahebkar Amirhossein A   Abnous Khalil K  

Daru : journal of Faculty of Pharmacy, Tehran University of Medical Sciences 20130320 1


<h4>Background and the purpose of the study</h4>Affinity-based target deconvolution is an emerging method for the identification of interactions between drugs/drug candidates and cellular proteins, and helps to predict potential activities and side effects of a given compound. In the present study, we hypothesized that a part of safranal pharmacological effects, one of the major constituent of Crocus sativus L., relies on its physical interaction with target proteins.<h4>Methods</h4>Affinity chr  ...[more]

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