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Sandbox GGC3
From Proteopedia
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==Firefly Luciferase== | ==Firefly Luciferase== | ||
| - | Check over subscripts and underlineee and tttaaarrgggetttt to the right plaaccceee please | + | Check over subscripts and underlineee and tttaaarrgggetttt to the right plaaccceee please oh and why no titles for the references :( |
<StructureSection loadfiles='4G36''4G37' size='340' side='right' caption='Luciferin-4-monooxygenase. The wild-type luciferase in the adenylate-forming conformation with DLSA (PDB 4G36) and the cross-linked luciferase in the second catalytic conformation with DLSA (PDB 4G37)' scene=''> | <StructureSection loadfiles='4G36''4G37' size='340' side='right' caption='Luciferin-4-monooxygenase. The wild-type luciferase in the adenylate-forming conformation with DLSA (PDB 4G36) and the cross-linked luciferase in the second catalytic conformation with DLSA (PDB 4G37)' scene=''> | ||
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ANL enzymes follow a domain alternation strategy for the first adenylation reaction, in which the reaction is catalyzed by one conformation and following the formation of the adenylate intermediate and release of pyrophosphate (PPi), the C-terminal domain undergoes a rotational transformation that is necessary for the second partial reaction. The active site of ANL enzymes resides between a 400-500 residue N-terminal domain and a smaller C-terminal domain of ~110-130 amino acids. Ten conserved regions of these proteins have been termed the A1-A10 motifs which play critical roles in either or both partial reactions. Two lysine residues are required for each partial reaction suggestive that luciferase similarly adopts a rotational transformation for complete catalysis. Lys529, the A10 lysine, impairs only the initial adenylation reaction whereas mutation of Lys443 in the A8 region disrupts the oxidative reaction. | ANL enzymes follow a domain alternation strategy for the first adenylation reaction, in which the reaction is catalyzed by one conformation and following the formation of the adenylate intermediate and release of pyrophosphate (PPi), the C-terminal domain undergoes a rotational transformation that is necessary for the second partial reaction. The active site of ANL enzymes resides between a 400-500 residue N-terminal domain and a smaller C-terminal domain of ~110-130 amino acids. Ten conserved regions of these proteins have been termed the A1-A10 motifs which play critical roles in either or both partial reactions. Two lysine residues are required for each partial reaction suggestive that luciferase similarly adopts a rotational transformation for complete catalysis. Lys529, the A10 lysine, impairs only the initial adenylation reaction whereas mutation of Lys443 in the A8 region disrupts the oxidative reaction. | ||
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Revision as of 20:43, 26 April 2021
Firefly Luciferase
Check over subscripts and underlineee and tttaaarrgggetttt to the right plaaccceee please oh and why no titles for the references :(
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References
- ↑ Sundlov, J. A., Fontaine, D. M., Southworth, T. L., Branchini, B. R., Gulick, A. M. (2012). Crystal Structure of Firefly Luciferase in a Second Catalytic Conformation Supports a Domain Alternation Mechanism. Biochemistry 51 (33), 6493-6495. https://doi.org/10.1021/bi300934s
