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Crowd Sourcing a New Paradigm for Interactome Driven Drug Target Identification in Mycobacterium tuberculosis

A decade since the availability of Mycobacterium tuberculosis (Mtb) genome sequence, no promising drug has seen the light of the day. This not only indicates the challenges in discovering new drugs but also suggests a gap in our current understanding of Mtb biology. We attempt to bridge this gap by...

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Autores principales: Vashisht, Rohit, Mondal, Anupam Kumar, Jain, Akanksha, Shah, Anup, Vishnoi, Priti, Priyadarshini, Priyanka, Bhattacharyya, Kausik, Rohira, Harsha, Bhat, Ashwini G., Passi, Anurag, Mukherjee, Keya, Choudhary, Kumari Sonal, Kumar, Vikas, Arora, Anshula, Munusamy, Prabhakaran, Subramanian, Ahalyaa, Venkatachalam, Aparna, S, Gayathri, Raj, Sweety, Chitra, Vijaya, Verma, Kaveri, Zaheer, Salman, J, Balaganesh, Gurusamy, Malarvizhi, Razeeth, Mohammed, Raja, Ilamathi, Thandapani, Madhumohan, Mevada, Vishal, Soni, Raviraj, Rana, Shruti, Ramanna, Girish Muthagadhalli, Raghavan, Swetha, Subramanya, Sunil N., Kholia, Trupti, Patel, Rajesh, Bhavnani, Varsha, Chiranjeevi, Lakavath, Sengupta, Soumi, Singh, Pankaj Kumar, Atray, Naresh, Gandhi, Swati, Avasthi, Tiruvayipati Suma, Nisthar, Shefin, Anurag, Meenakshi, Sharma, Pratibha, Hasija, Yasha, Dash, Debasis, Sharma, Arun, Scaria, Vinod, Thomas, Zakir, Chandra, Nagasuma, Brahmachari, Samir K., Bhardwaj, Anshu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3395720/
https://www.ncbi.nlm.nih.gov/pubmed/22808064
http://dx.doi.org/10.1371/journal.pone.0039808
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author Vashisht, Rohit
Mondal, Anupam Kumar
Jain, Akanksha
Shah, Anup
Vishnoi, Priti
Priyadarshini, Priyanka
Bhattacharyya, Kausik
Rohira, Harsha
Bhat, Ashwini G.
Passi, Anurag
Mukherjee, Keya
Choudhary, Kumari Sonal
Kumar, Vikas
Arora, Anshula
Munusamy, Prabhakaran
Subramanian, Ahalyaa
Venkatachalam, Aparna
S, Gayathri
Raj, Sweety
Chitra, Vijaya
Verma, Kaveri
Zaheer, Salman
J, Balaganesh
Gurusamy, Malarvizhi
Razeeth, Mohammed
Raja, Ilamathi
Thandapani, Madhumohan
Mevada, Vishal
Soni, Raviraj
Rana, Shruti
Ramanna, Girish Muthagadhalli
Raghavan, Swetha
Subramanya, Sunil N.
Kholia, Trupti
Patel, Rajesh
Bhavnani, Varsha
Chiranjeevi, Lakavath
Sengupta, Soumi
Singh, Pankaj Kumar
Atray, Naresh
Gandhi, Swati
Avasthi, Tiruvayipati Suma
Nisthar, Shefin
Anurag, Meenakshi
Sharma, Pratibha
Hasija, Yasha
Dash, Debasis
Sharma, Arun
Scaria, Vinod
Thomas, Zakir
Chandra, Nagasuma
Brahmachari, Samir K.
Bhardwaj, Anshu
author_facet Vashisht, Rohit
Mondal, Anupam Kumar
Jain, Akanksha
Shah, Anup
Vishnoi, Priti
Priyadarshini, Priyanka
Bhattacharyya, Kausik
Rohira, Harsha
Bhat, Ashwini G.
Passi, Anurag
Mukherjee, Keya
Choudhary, Kumari Sonal
Kumar, Vikas
Arora, Anshula
Munusamy, Prabhakaran
Subramanian, Ahalyaa
Venkatachalam, Aparna
S, Gayathri
Raj, Sweety
Chitra, Vijaya
Verma, Kaveri
Zaheer, Salman
J, Balaganesh
Gurusamy, Malarvizhi
Razeeth, Mohammed
Raja, Ilamathi
Thandapani, Madhumohan
Mevada, Vishal
Soni, Raviraj
Rana, Shruti
Ramanna, Girish Muthagadhalli
Raghavan, Swetha
Subramanya, Sunil N.
Kholia, Trupti
Patel, Rajesh
Bhavnani, Varsha
Chiranjeevi, Lakavath
Sengupta, Soumi
Singh, Pankaj Kumar
Atray, Naresh
Gandhi, Swati
Avasthi, Tiruvayipati Suma
Nisthar, Shefin
Anurag, Meenakshi
Sharma, Pratibha
Hasija, Yasha
Dash, Debasis
Sharma, Arun
Scaria, Vinod
Thomas, Zakir
Chandra, Nagasuma
Brahmachari, Samir K.
Bhardwaj, Anshu
author_sort Vashisht, Rohit
collection PubMed
description A decade since the availability of Mycobacterium tuberculosis (Mtb) genome sequence, no promising drug has seen the light of the day. This not only indicates the challenges in discovering new drugs but also suggests a gap in our current understanding of Mtb biology. We attempt to bridge this gap by carrying out extensive re-annotation and constructing a systems level protein interaction map of Mtb with an objective of finding novel drug target candidates. Towards this, we synergized crowd sourcing and social networking methods through an initiative ‘Connect to Decode’ (C2D) to generate the first and largest manually curated interactome of Mtb termed ‘interactome pathway’ (IPW), encompassing a total of 1434 proteins connected through 2575 functional relationships. Interactions leading to gene regulation, signal transduction, metabolism, structural complex formation have been catalogued. In the process, we have functionally annotated 87% of the Mtb genome in context of gene products. We further combine IPW with STRING based network to report central proteins, which may be assessed as potential drug targets for development of drugs with least possible side effects. The fact that five of the 17 predicted drug targets are already experimentally validated either genetically or biochemically lends credence to our unique approach.
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spelling pubmed-33957202012-07-17 Crowd Sourcing a New Paradigm for Interactome Driven Drug Target Identification in Mycobacterium tuberculosis Vashisht, Rohit Mondal, Anupam Kumar Jain, Akanksha Shah, Anup Vishnoi, Priti Priyadarshini, Priyanka Bhattacharyya, Kausik Rohira, Harsha Bhat, Ashwini G. Passi, Anurag Mukherjee, Keya Choudhary, Kumari Sonal Kumar, Vikas Arora, Anshula Munusamy, Prabhakaran Subramanian, Ahalyaa Venkatachalam, Aparna S, Gayathri Raj, Sweety Chitra, Vijaya Verma, Kaveri Zaheer, Salman J, Balaganesh Gurusamy, Malarvizhi Razeeth, Mohammed Raja, Ilamathi Thandapani, Madhumohan Mevada, Vishal Soni, Raviraj Rana, Shruti Ramanna, Girish Muthagadhalli Raghavan, Swetha Subramanya, Sunil N. Kholia, Trupti Patel, Rajesh Bhavnani, Varsha Chiranjeevi, Lakavath Sengupta, Soumi Singh, Pankaj Kumar Atray, Naresh Gandhi, Swati Avasthi, Tiruvayipati Suma Nisthar, Shefin Anurag, Meenakshi Sharma, Pratibha Hasija, Yasha Dash, Debasis Sharma, Arun Scaria, Vinod Thomas, Zakir Chandra, Nagasuma Brahmachari, Samir K. Bhardwaj, Anshu PLoS One Research Article A decade since the availability of Mycobacterium tuberculosis (Mtb) genome sequence, no promising drug has seen the light of the day. This not only indicates the challenges in discovering new drugs but also suggests a gap in our current understanding of Mtb biology. We attempt to bridge this gap by carrying out extensive re-annotation and constructing a systems level protein interaction map of Mtb with an objective of finding novel drug target candidates. Towards this, we synergized crowd sourcing and social networking methods through an initiative ‘Connect to Decode’ (C2D) to generate the first and largest manually curated interactome of Mtb termed ‘interactome pathway’ (IPW), encompassing a total of 1434 proteins connected through 2575 functional relationships. Interactions leading to gene regulation, signal transduction, metabolism, structural complex formation have been catalogued. In the process, we have functionally annotated 87% of the Mtb genome in context of gene products. We further combine IPW with STRING based network to report central proteins, which may be assessed as potential drug targets for development of drugs with least possible side effects. The fact that five of the 17 predicted drug targets are already experimentally validated either genetically or biochemically lends credence to our unique approach. Public Library of Science 2012-07-11 /pmc/articles/PMC3395720/ /pubmed/22808064 http://dx.doi.org/10.1371/journal.pone.0039808 Text en Vashisht et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Vashisht, Rohit
Mondal, Anupam Kumar
Jain, Akanksha
Shah, Anup
Vishnoi, Priti
Priyadarshini, Priyanka
Bhattacharyya, Kausik
Rohira, Harsha
Bhat, Ashwini G.
Passi, Anurag
Mukherjee, Keya
Choudhary, Kumari Sonal
Kumar, Vikas
Arora, Anshula
Munusamy, Prabhakaran
Subramanian, Ahalyaa
Venkatachalam, Aparna
S, Gayathri
Raj, Sweety
Chitra, Vijaya
Verma, Kaveri
Zaheer, Salman
J, Balaganesh
Gurusamy, Malarvizhi
Razeeth, Mohammed
Raja, Ilamathi
Thandapani, Madhumohan
Mevada, Vishal
Soni, Raviraj
Rana, Shruti
Ramanna, Girish Muthagadhalli
Raghavan, Swetha
Subramanya, Sunil N.
Kholia, Trupti
Patel, Rajesh
Bhavnani, Varsha
Chiranjeevi, Lakavath
Sengupta, Soumi
Singh, Pankaj Kumar
Atray, Naresh
Gandhi, Swati
Avasthi, Tiruvayipati Suma
Nisthar, Shefin
Anurag, Meenakshi
Sharma, Pratibha
Hasija, Yasha
Dash, Debasis
Sharma, Arun
Scaria, Vinod
Thomas, Zakir
Chandra, Nagasuma
Brahmachari, Samir K.
Bhardwaj, Anshu
Crowd Sourcing a New Paradigm for Interactome Driven Drug Target Identification in Mycobacterium tuberculosis
title Crowd Sourcing a New Paradigm for Interactome Driven Drug Target Identification in Mycobacterium tuberculosis
title_full Crowd Sourcing a New Paradigm for Interactome Driven Drug Target Identification in Mycobacterium tuberculosis
title_fullStr Crowd Sourcing a New Paradigm for Interactome Driven Drug Target Identification in Mycobacterium tuberculosis
title_full_unstemmed Crowd Sourcing a New Paradigm for Interactome Driven Drug Target Identification in Mycobacterium tuberculosis
title_short Crowd Sourcing a New Paradigm for Interactome Driven Drug Target Identification in Mycobacterium tuberculosis
title_sort crowd sourcing a new paradigm for interactome driven drug target identification in mycobacterium tuberculosis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3395720/
https://www.ncbi.nlm.nih.gov/pubmed/22808064
http://dx.doi.org/10.1371/journal.pone.0039808
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