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Repressor of temperate mycobacteriophage L1 harbors a stable C-terminal domain and binds to different asymmetric operator DNAs with variable affinity

BACKGROUND: Lysogenic mode of life cycle of a temperate bacteriophage is generally maintained by a protein called 'repressor'. Repressor proteins of temperate lambdoid phages bind to a few symmetric operator DNAs in order to regulate their gene expression. In contrast, repressor molecules...

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Autores principales: Ganguly, Tridib, Bandhu, Amitava, Chattoraj, Partho, Chanda, Palas K, Das, Malabika, Mandal, Nitai C, Sau, Subrata
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1934351/
https://www.ncbi.nlm.nih.gov/pubmed/17598887
http://dx.doi.org/10.1186/1743-422X-4-64
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author Ganguly, Tridib
Bandhu, Amitava
Chattoraj, Partho
Chanda, Palas K
Das, Malabika
Mandal, Nitai C
Sau, Subrata
author_facet Ganguly, Tridib
Bandhu, Amitava
Chattoraj, Partho
Chanda, Palas K
Das, Malabika
Mandal, Nitai C
Sau, Subrata
author_sort Ganguly, Tridib
collection PubMed
description BACKGROUND: Lysogenic mode of life cycle of a temperate bacteriophage is generally maintained by a protein called 'repressor'. Repressor proteins of temperate lambdoid phages bind to a few symmetric operator DNAs in order to regulate their gene expression. In contrast, repressor molecules of temperate mycobacteriophages and some other phages bind to multiple asymmetric operator DNAs. Very little is known at present about the structure-function relationship of any mycobacteriophage repressor. RESULTS: Using highly purified repressor (CI) of temperate mycobacteriophage L1, we have demonstrated here that L1 CI harbors an N-terminal domain (NTD) and a C-terminal domain (CTD) which are separated by a small hinge region. Interestingly, CTD is more compact than NTD at 25°C. Both CTD and CI contain significant amount of α-helix at 30°C but unfold partly at 42°C. At nearly 200 nM concentration, both proteins form appreciable amount of dimers in solution. Additional studies reveal that CI binds to O(64 )and O(L )types of asymmetric operators of L1 with variable affinity at 25°C. Interestingly, repressor – operator interaction is affected drastically at 42°C. The conformational change of CI is most possibly responsible for its reduced operator binding affinity at 42°C. CONCLUSION: Repressors encoded by mycobacteriophages differ significantly from the repressor proteins of λ and related phages at functional level but at structural level they are nearly similar.
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spelling pubmed-19343512007-07-28 Repressor of temperate mycobacteriophage L1 harbors a stable C-terminal domain and binds to different asymmetric operator DNAs with variable affinity Ganguly, Tridib Bandhu, Amitava Chattoraj, Partho Chanda, Palas K Das, Malabika Mandal, Nitai C Sau, Subrata Virol J Research BACKGROUND: Lysogenic mode of life cycle of a temperate bacteriophage is generally maintained by a protein called 'repressor'. Repressor proteins of temperate lambdoid phages bind to a few symmetric operator DNAs in order to regulate their gene expression. In contrast, repressor molecules of temperate mycobacteriophages and some other phages bind to multiple asymmetric operator DNAs. Very little is known at present about the structure-function relationship of any mycobacteriophage repressor. RESULTS: Using highly purified repressor (CI) of temperate mycobacteriophage L1, we have demonstrated here that L1 CI harbors an N-terminal domain (NTD) and a C-terminal domain (CTD) which are separated by a small hinge region. Interestingly, CTD is more compact than NTD at 25°C. Both CTD and CI contain significant amount of α-helix at 30°C but unfold partly at 42°C. At nearly 200 nM concentration, both proteins form appreciable amount of dimers in solution. Additional studies reveal that CI binds to O(64 )and O(L )types of asymmetric operators of L1 with variable affinity at 25°C. Interestingly, repressor – operator interaction is affected drastically at 42°C. The conformational change of CI is most possibly responsible for its reduced operator binding affinity at 42°C. CONCLUSION: Repressors encoded by mycobacteriophages differ significantly from the repressor proteins of λ and related phages at functional level but at structural level they are nearly similar. BioMed Central 2007-06-28 /pmc/articles/PMC1934351/ /pubmed/17598887 http://dx.doi.org/10.1186/1743-422X-4-64 Text en Copyright © 2007 Ganguly et al; licensee BioMed Central Ltd. 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 Research
Ganguly, Tridib
Bandhu, Amitava
Chattoraj, Partho
Chanda, Palas K
Das, Malabika
Mandal, Nitai C
Sau, Subrata
Repressor of temperate mycobacteriophage L1 harbors a stable C-terminal domain and binds to different asymmetric operator DNAs with variable affinity
title Repressor of temperate mycobacteriophage L1 harbors a stable C-terminal domain and binds to different asymmetric operator DNAs with variable affinity
title_full Repressor of temperate mycobacteriophage L1 harbors a stable C-terminal domain and binds to different asymmetric operator DNAs with variable affinity
title_fullStr Repressor of temperate mycobacteriophage L1 harbors a stable C-terminal domain and binds to different asymmetric operator DNAs with variable affinity
title_full_unstemmed Repressor of temperate mycobacteriophage L1 harbors a stable C-terminal domain and binds to different asymmetric operator DNAs with variable affinity
title_short Repressor of temperate mycobacteriophage L1 harbors a stable C-terminal domain and binds to different asymmetric operator DNAs with variable affinity
title_sort repressor of temperate mycobacteriophage l1 harbors a stable c-terminal domain and binds to different asymmetric operator dnas with variable affinity
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1934351/
https://www.ncbi.nlm.nih.gov/pubmed/17598887
http://dx.doi.org/10.1186/1743-422X-4-64
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