Sandbox Reserved 1068: Difference between revisions

From Proteopedia
Jump to navigationJump to search
No edit summary
No edit summary
Line 13: Line 13:
[[Image:Capture.PNG|300 px|left|thumb|'''Figure 2''': Monomeric ribbon diagram of MbtI with active site cleft highlighted with a white circle. Generated from [[3log]] (3a)]]
[[Image:Capture.PNG|300 px|left|thumb|'''Figure 2''': Monomeric ribbon diagram of MbtI with active site cleft highlighted with a white circle. Generated from [[3log]] (3a)]]


The crystal asymmetric unit was found to contain <scene name='69/694235/3log/11'> four MbtI molecules</scene>, however crystal packing and size exclusion chromatography data suggest a monomeric enzyme <ref name= "3a">PMID 16923875</ref>. There are no significant structural changes between the four monomers excepts from the localized differences in the active site <ref name= "3a"/>. The overall molecular structure consist of a polypeptide of 450 residues that forms one large single domain with a similar fold to other chromate-utilizing enzymes <ref name="3a"/>. The core of the protein is formed by <scene name='69/694234/Beta_sheets/1'>21 Beta sheets </scene>folded into a twisted beta-sandwich. The protein's core is then surrounded by <scene name='69/694235/Beta_sheets/4'>10 alpha helices</scene><ref name="3a"/>. The active site was identified by comparison to the product bound forms of Irp9 and TrpE and is situated in a cleft that is about 12Å in length, 10Å deep, and 7Å wide. One side of the groove is formed by β21, C-terminal helix, and α11. The other side of the groove is formed by β16-17 loop, helix α7, and β15-α6 loop. The β19-20 and β12-13 loops make up the bottom of the active side cleft (Figure 20. <ref name="3a">PMID:16923875</ref>
The crystal asymmetric unit was found to contain <scene name='69/694235/3log/11'> four MbtI molecules</scene>, however crystal packing and size exclusion chromatography data suggest a monomeric enzyme <ref name= "3a">PMID 16923875</ref>. There are no significant structural changes between the four monomers excepts from the localized differences in the active site <ref name= "3a"/>. The overall molecular structure consist of a polypeptide of 450 residues that forms <scene name='69/694235/Alpha_helics/2'>one large single domain</scene> with a similar fold to other chromate-utilizing enzymes <ref name="3a"/>. The core of the protein is formed by <scene name='69/694234/Beta_sheets/1'>21 Beta sheets </scene>folded into a twisted beta-sandwich. The protein's core is then surrounded by <scene name='69/694235/Beta_sheets/4'>10 alpha helices</scene><ref name="3a"/>. The active site was identified by comparison to the product bound forms of Irp9 and TrpE and is situated in a cleft that is about 12Å in length, 10Å deep, and 7Å wide <ref name="3a"/>. One side of the groove is formed by β21, C-terminal helix, and α11 while the other side of the groove is formed by β16-17 loop, helix α7, and β15-α6 loop (figure 2)<ref name="3a"/>. The β19-20 and β12-13 loops make up the bottom of the active side cleft (Figure 2) <ref name="3a">PMID:16923875</ref>.
 
 
<scene name='69/694235/Alpha_helics/2'>TextToBeDisplayed</scene>
 
<scene name='69/694235/Beta_strands/2'>TextToBeDisplayed</scene>




== Structural highlights ==
== Structural highlights ==


[[Image:Screen Shot 2015-04-26 at 6.31.19 PM.png|200 px|left|thumb|'''Figure 3:''' Overlay of chain A in [[3ST6]] (green) and [[3RV6]] (teal). [[3ST6]] contains the inhibitor AMT and represents the closed form of MbtI while [[3RV6]] contains an enolpyruvyl modified inhibitor (phenyl-AMT) and shows the movement of the backbone away from the closed form to accommodate the modified inhibitor. <ref name= "8a"/>.]].
[[Image:Screen Shot 2015-04-26 at 6.31.19 PM.png|200 px|left|thumb|'''Figure 3:''' Overlay of chain A in [[3ST6]] (green) and [[3RV6]] (teal). [[3ST6]] contains the inhibitor AMT and represents the closed form of MbtI while [[3RV6]] contains an enolpyruvyl modified inhibitor (phenyl-AMT) and shows the movement of the backbone away from the closed form to accommodate the modified inhibitor. <ref name= "8a"/>.]]


[[Image:Screen Shot 2015-04-26 at 6.29.56 PM.png|200 px|left|thumb|'''Figure 4:''' Overlay of chain A in [[3ST6]] (green) and [[3RV6]] (teal) with inhibitors bound and magnesium. <ref name= "8a"/>.]]  
[[Image:Screen Shot 2015-04-26 at 6.29.56 PM.png|200 px|left|thumb|'''Figure 4:''' Overlay of chain A in [[3ST6]] (green) and [[3RV6]] (teal) with inhibitors bound and magnesium. <ref name= "8a"/>.]]  


[[Image:Screen Shot 2015-04-26 at 6.30.55 PM.png|200 px|left|thumb|'''Figure 5:''' Flexibility of peptide backbone in regions proximal to the active site see through the overlay of chain A residues 269-293 and 324-336 in [[3ST6]] (green) and [[3RV6]] (teal)<ref name= "8a"/>.]].
[[Image:Screen Shot 2015-04-26 at 6.30.55 PM.png|200 px|left|thumb|'''Figure 5:''' Flexibility of peptide backbone in regions proximal to the active site see through the overlay of chain A residues 269-293 and 324-336 in [[3ST6]] (green) and [[3RV6]] (teal)<ref name= "8a"/>.]]
 
MbtI structure has a mobile element (residues 268-293 and 324-336) that can adopt a <scene name='69/694235/Irp9_closed_state/2'>closed</scene> or <scene name='69/694235/2g5f_with_open_loop/1'>open conformation</scene> depending on whether or not ligands are bound to the active site.<ref name="3a"/> The closed conformation partially obstructs the active site. <ref name= "5a"/>.


Inhibition studies have also shown a switch in binding mode at the MbtI active site for inhibitors carrying a substituted enolpyruvyl group compared to the chorismate substrate <ref name="5a">PMID:22607697</ref> <ref name=
MbtI structure has a mobile element (residues 268-293 and 324-336) that can adopt a closed or open conformation depending on whether or not ligands are bound to the active site (Figure 3,4,5)<ref name="3a"/>. The closed conformation partially obstructs the active site. <ref name= "5a"/>. Inhibition studies have also shown a switch in binding mode at the MbtI active site for inhibitors carrying a substituted enolpyruvyl group compared to the chorismate substrate <ref name="5a">PMID:22607697</ref> <ref name="2a">PMID:23108268</ref> <ref name="1a">PMID:20512795</ref>. Crystal structures and fluorescent-based thermal shift assays show that substituents larger than a methyl group are accommodated in the active site of MbtI through localized flexibility in the peptide backbone.<ref name="5a"/> Positioning of the <scene name='69/694235/3st6_structure_bindingpocket/3'>active site residues</scene> of MbtI in [[3ST6]] with the inhibitor AMT bound is highly similar to the positioning of the <scene name='69/694235/3log_bindingpocket/3'>active site residues</scene> in closed form of MbtI [[3log]] with succinic acid bound <ref name= "5a"/>. The AMT inhibitor contains an unmodified enolpyruvyl side chain and resembles the structure of the natural substrate, chorismate. [[3log]] and [[3ST6]] are shown to share a similar binding mode, termed binding mode 1. Isochorismate inhibitors with modified enolpyruvl side chains ([[3VEH]], [[3RV9]], [[3RV8]], [[3RV7]], [[3RV6]]) utilize a novel binding mode, termed mode 2, which involves the <scene name='69/694235/3veh_structure_bindingpocket2/2'>reorientation of the isochorismate analogue within the active site</scene>. Movement of the peptide backbone away from the closed form of MbtI is required to accommodate the enolpyruyl modified inhibitors.
"2a">PMID:23108268</ref> <ref name="1a">PMID:20512795</ref>. Crystal structures and fluorescent-based thermal shift assays show that substituents larger than a methyl group are accommodated in the active site of MbtI through localized flexibility in the peptide backbone.<ref name="5a"/> Positioning of the <scene name='69/694235/3st6_structure_bindingpocket/3'>active site residues</scene> of MbtI in [[3ST6]] with the inhibitor AMT bound is highly similar to the positioning of the <scene name='69/694235/3log_bindingpocket/3'>active site residues</scene> in closed form of MbtI [[3log]] with succinic acid bound <ref name= "5a"/>. The AMT inhibitor contains an unmodified enolpyruvyl side chain and resembles the structure of the natural substrate, chorismate. [[3log]] and [[3ST6]] are shown to share a similar binding mode, termed binding mode 1. Isochorismate inhibitors with modified enolpyruvl side chains ([[3VEH]], [[3RV9]], [[3RV8]], [[3RV7]], [[3RV6]]) utilize a novel binding mode, termed mode 2, which involves the <scene name='69/694235/3veh_structure_bindingpocket2/2'>reorientation of the isochorismate analogue within the active site</scene>. Movement of the peptide backbone away from the closed form of MbtI is required to accommodate the enolpyruyl modified inhibitors.





Revision as of 23:11, 26 April 2015

Mycobacterium tuberculosis salicylate synthase (Mbt1)

(3LOG) is a 4 chain structure of MbtI with sequence from Mycobacterium tuberculosis. Full crystallographic information is available from OCA.

Drag the structure with the mouse to rotate

References


Student contributors

Stephanie Raynor and Robin Gagnon

Related pdb files and proteopedia pages

3D structures of isochorismate pyruvate lyase

3log – MtIPL/isochorismate synthase - Mycobacterium tuberculosis
3ST6, 3RV6, 3ST6, 3RV6, 3ST6, 3RV6 - MtIPL/isochorismate synthase + inhibitor
3ST6 – PaIPL residues 1-99 – Pseudomonas aeruginosa
3RV6 - PaIPL + pyruvate 3ST6

3D structure of isochorismate synthase

3log, 3log, 3ST6 - MenF from E. coli
3VEH - DhbC from Bacillus anthracis
3RV9 - MenF from Yersinia pestis
3RV8 - EntC

3D structure of salicylate synthase

3RV7 - MbtI with inhibitor methylAMT
3RV6 - MbtI with isochorismate analogue inhibitor
3rv6 (Phenyl R-group), 3rv7 (Isopropyl R-group), 3rv8 (Cyclopropyl R-group), 3rv9 (Ethyl R-group) - MbtI with inhibitor
2fn0, 2fn1 (with products salicylate and pyruvate) - Irp9 from Yersinia enterocolitica
2i6y - MbtI