Mycobacterium tuberculosis ArfA Rv0899

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Using [[NMR]] chemical shift perturbation and isothermal calorimetric titration assays, Rv0899 was able to interact with <scene name='61/612805/Binding-site_for_zn/1'>Zn(2+) ions</scene>, which may indicate a role for Rv0899 in the process of Zn(2+) acquisition.
Using [[NMR]] chemical shift perturbation and isothermal calorimetric titration assays, Rv0899 was able to interact with <scene name='61/612805/Binding-site_for_zn/1'>Zn(2+) ions</scene>, which may indicate a role for Rv0899 in the process of Zn(2+) acquisition.
<ref>PMID: 22108166 </ref>
<ref>PMID: 22108166 </ref>
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''Mycobacterium tuberculosis'' ArfA (Rv0899) is a membrane protein encoded by an ammonia release facilator operon that is necessary for rapid ammonia secretion, pH neutralization and adaptation to acidic environments in vitro. Its C-terminal domain (C domain) shares significant sequence homology with the OmpA-like family of peptidoglycan-binding domains, suggesting that its physiological function in acid stress protection may be related to its interaction with the mycobacterial cell wall. It exhibits pH-dependent conformational dynamics (with significant heterogeneity at neutral pH and a more ordered structure at acidic pH), which could be related to its acid stress response. The C domain associates tightly with polymeric peptidoglycan isolated from ''Mycobacterium tuberculosis''. Its functions in acid stress protection and <scene name='61/612805/The_peptidoglycan_binding_site/1'>peptidoglycan binding</scene> suggest a link between the acid stress response and the physicochemical properties of the mycobacterial cell wall.<ref>PMID: 22206986 </ref>.
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''Mycobacterium tuberculosis'' ArfA (Rv0899) is a membrane protein encoded by an ammonia release facilator operon that is necessary for rapid ammonia secretion, pH neutralization and adaptation to acidic environments in vitro. Its C-terminal domain (C domain) shares significant sequence homology with the OmpA-like family of peptidoglycan-binding domains, suggesting that its physiological function in acid stress protection may be related to its interaction with the mycobacterial cell wall. It exhibits pH-dependent conformational dynamics<scene name='61/612805/Hydrophobic_region_of_d236a/1'>Hydrophobic region of mutant ArfA-c (D236A)</scene> <scene name='61/612805/The_peptidoglycan_binding_site/1'>The peptidoglycan binding site</scene> (with significant heterogeneity at neutral pH and a more ordered structure at acidic pH), which could be related to its acid stress response. The C domain associates tightly with polymeric peptidoglycan isolated from ''Mycobacterium tuberculosis''. Its functions in acid stress protection and <scene name='61/612805/The_peptidoglycan_binding_site/1'>peptidoglycan binding</scene> suggest a link between the acid stress response and the physicochemical properties of the mycobacterial cell wall <scene name='61/612805/Hydrophobic_region_of_d236a/3'>Pept+H</scene> .<ref>PMID: 22206986 </ref>.
[[Image:Pep-gl.jpg|210px]]
[[Image:Pep-gl.jpg|210px]]
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[[Image:Bdomain.jpg|150px]] [[Image:Asparaginase-reaction.jpg|150px]]
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[[Image:Bdomain.jpg|150px]] [[Image:Asparaginase-reaction.jpg|150px]]
== Relevance ==
== Relevance ==
Probably plays a role in ammonia secretion that neutralizes the medium at pH 5.5,and preceded exponential growth of ''Mycobacterium tuberculosis'', although it does not play a direct role in ammonia transport.[[http://www.uniprot.org/uniprot/P9WIU5 ARFA_MYCTU]].
Probably plays a role in ammonia secretion that neutralizes the medium at pH 5.5,and preceded exponential growth of ''Mycobacterium tuberculosis'', although it does not play a direct role in ammonia transport.[[http://www.uniprot.org/uniprot/P9WIU5 ARFA_MYCTU]].
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<scene name='61/612805/Hydrophobic_region_of_d236a/3'>Pept+H</scene>
 
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<scene name='61/612805/The_peptidoglycan_binding_site/1'>The peptidoglycan binding site</scene>
 
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<scene name='61/612805/Hydrophobic_region_of_d236a/1'>Hydrophobic region of mutant ArfA-c (D236A)</scene>
 
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== References ==
== References ==
<references/>
<references/>

Revision as of 18:45, 15 January 2015

NMR structure of uncharacterized protein Rv0899 (PDB code 2l26)

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Liliya Karasik, Jaime Prilusky, Michal Harel

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