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Fermentation, Isolation, Structure, and antidiabetic activity of NFAT-133 produced by Streptomyces strain PM0324667

Type-2 diabetes is mediated by defects in either insulin secretion or insulin action. In an effort to identify extracts that may stimulate glucose uptake, similar to insulin, a high throughput-screening assay for measuring glucose uptake in skeletal muscle cells was established. During the screening...

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Autores principales: Kulkarni-Almeida, Asha A, Brahma, Manoja K, Padmanabhan, Prabhu, Mishra, Prabhu D, Parab, Rajashri R, Gaikwad, Nitin V, Thakkar, Chandni S, Tokdar, Pradipta, Ranadive, Prafull V, Nair, Amrutha S, Damre, Anagha A, Bahirat, Umakant A, Deshmukh, Nitin J, Doshi, Lalit S, Dixit, Amol V, George, Saji D, Vishwakarma, Ram A, Nemmani, Kumar VS, Mahajan, Girish B
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3274447/
https://www.ncbi.nlm.nih.gov/pubmed/22104600
http://dx.doi.org/10.1186/2191-0855-1-42
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author Kulkarni-Almeida, Asha A
Brahma, Manoja K
Padmanabhan, Prabhu
Mishra, Prabhu D
Parab, Rajashri R
Gaikwad, Nitin V
Thakkar, Chandni S
Tokdar, Pradipta
Ranadive, Prafull V
Nair, Amrutha S
Damre, Anagha A
Bahirat, Umakant A
Deshmukh, Nitin J
Doshi, Lalit S
Dixit, Amol V
George, Saji D
Vishwakarma, Ram A
Nemmani, Kumar VS
Mahajan, Girish B
author_facet Kulkarni-Almeida, Asha A
Brahma, Manoja K
Padmanabhan, Prabhu
Mishra, Prabhu D
Parab, Rajashri R
Gaikwad, Nitin V
Thakkar, Chandni S
Tokdar, Pradipta
Ranadive, Prafull V
Nair, Amrutha S
Damre, Anagha A
Bahirat, Umakant A
Deshmukh, Nitin J
Doshi, Lalit S
Dixit, Amol V
George, Saji D
Vishwakarma, Ram A
Nemmani, Kumar VS
Mahajan, Girish B
author_sort Kulkarni-Almeida, Asha A
collection PubMed
description Type-2 diabetes is mediated by defects in either insulin secretion or insulin action. In an effort to identify extracts that may stimulate glucose uptake, similar to insulin, a high throughput-screening assay for measuring glucose uptake in skeletal muscle cells was established. During the screening studies to discover novel antidiabetic compounds from microbial resources a Streptomyces strain PM0324667 (MTCC 5543, the Strain accession number at Institute of Microbial Technology, Chandigarh, India), an isolate from arid soil was identified which expressed a secondary metabolite that induced glucose uptake in L6 skeletal muscle cells. By employing bioactivity guided fractionation techniques, a tri-substituted simple aromatic compound with anti-diabetic potential was isolated. It was characterized based on MS and 2D NMR spectral data and identified as NFAT-133 which is a known immunosuppressive agent that inhibits NFAT-dependent transcription in vitro. Our investigations revealed the antidiabetic potential of NFAT-133. The compound induced glucose uptake in differentiated L6 myotubes with an EC(50 )of 6.3 ± 1.8 μM without activating the peroxisome proliferator-activated receptor-γ. Further, NFAT-133 was also efficacious in vivo in diabetic animals and reduced systemic glucose levels. Thus it is a potential lead compound which can be considered for development as a therapeutic for the treatment of type-2 diabetes. We have reported herewith the isolation of the producer microbe, fermentation, purification, in vitro, and in vivo antidiabetic activity of the compound.
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spelling pubmed-32744472012-02-08 Fermentation, Isolation, Structure, and antidiabetic activity of NFAT-133 produced by Streptomyces strain PM0324667 Kulkarni-Almeida, Asha A Brahma, Manoja K Padmanabhan, Prabhu Mishra, Prabhu D Parab, Rajashri R Gaikwad, Nitin V Thakkar, Chandni S Tokdar, Pradipta Ranadive, Prafull V Nair, Amrutha S Damre, Anagha A Bahirat, Umakant A Deshmukh, Nitin J Doshi, Lalit S Dixit, Amol V George, Saji D Vishwakarma, Ram A Nemmani, Kumar VS Mahajan, Girish B AMB Express Original Type-2 diabetes is mediated by defects in either insulin secretion or insulin action. In an effort to identify extracts that may stimulate glucose uptake, similar to insulin, a high throughput-screening assay for measuring glucose uptake in skeletal muscle cells was established. During the screening studies to discover novel antidiabetic compounds from microbial resources a Streptomyces strain PM0324667 (MTCC 5543, the Strain accession number at Institute of Microbial Technology, Chandigarh, India), an isolate from arid soil was identified which expressed a secondary metabolite that induced glucose uptake in L6 skeletal muscle cells. By employing bioactivity guided fractionation techniques, a tri-substituted simple aromatic compound with anti-diabetic potential was isolated. It was characterized based on MS and 2D NMR spectral data and identified as NFAT-133 which is a known immunosuppressive agent that inhibits NFAT-dependent transcription in vitro. Our investigations revealed the antidiabetic potential of NFAT-133. The compound induced glucose uptake in differentiated L6 myotubes with an EC(50 )of 6.3 ± 1.8 μM without activating the peroxisome proliferator-activated receptor-γ. Further, NFAT-133 was also efficacious in vivo in diabetic animals and reduced systemic glucose levels. Thus it is a potential lead compound which can be considered for development as a therapeutic for the treatment of type-2 diabetes. We have reported herewith the isolation of the producer microbe, fermentation, purification, in vitro, and in vivo antidiabetic activity of the compound. Springer 2011-11-21 /pmc/articles/PMC3274447/ /pubmed/22104600 http://dx.doi.org/10.1186/2191-0855-1-42 Text en Copyright ©2011 Kulkarni-Almeida et al; licensee Springer. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original
Kulkarni-Almeida, Asha A
Brahma, Manoja K
Padmanabhan, Prabhu
Mishra, Prabhu D
Parab, Rajashri R
Gaikwad, Nitin V
Thakkar, Chandni S
Tokdar, Pradipta
Ranadive, Prafull V
Nair, Amrutha S
Damre, Anagha A
Bahirat, Umakant A
Deshmukh, Nitin J
Doshi, Lalit S
Dixit, Amol V
George, Saji D
Vishwakarma, Ram A
Nemmani, Kumar VS
Mahajan, Girish B
Fermentation, Isolation, Structure, and antidiabetic activity of NFAT-133 produced by Streptomyces strain PM0324667
title Fermentation, Isolation, Structure, and antidiabetic activity of NFAT-133 produced by Streptomyces strain PM0324667
title_full Fermentation, Isolation, Structure, and antidiabetic activity of NFAT-133 produced by Streptomyces strain PM0324667
title_fullStr Fermentation, Isolation, Structure, and antidiabetic activity of NFAT-133 produced by Streptomyces strain PM0324667
title_full_unstemmed Fermentation, Isolation, Structure, and antidiabetic activity of NFAT-133 produced by Streptomyces strain PM0324667
title_short Fermentation, Isolation, Structure, and antidiabetic activity of NFAT-133 produced by Streptomyces strain PM0324667
title_sort fermentation, isolation, structure, and antidiabetic activity of nfat-133 produced by streptomyces strain pm0324667
topic Original
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3274447/
https://www.ncbi.nlm.nih.gov/pubmed/22104600
http://dx.doi.org/10.1186/2191-0855-1-42
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