Aldolase: Difference between revisions
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=Aldolase class II. Metal-dependent aldolase= | =Aldolase class II. Metal-dependent aldolase= | ||
''' | '''Fructose-1,6-bisphosphate aldolase''' catalyzes the conversion of fructose-1,6-bisphosphatealdol to dihydroxyacetone phosphate (DHAP) and glyceraldehyde 3-phosphate (G3P) <ref>PMID:10712619</ref>.<br /> | ||
'''Tagatose-1,6-bisphosphate aldolase''' catalyzes the aldol condensation of DHAP with G3P to produce tagatose 1,6-bisphosphate<ref>PMID:11940603</ref>.<br /> | |||
'''Fuculose-1-phosphate aldolase''' catalyzes the cleavage of fuculose-1-phosphate to dihydroxyacetone phosphate (DHAP) and lactaldehyde<ref>PMID:10821675</ref>.<br /> | '''Fuculose-1-phosphate aldolase''' catalyzes the cleavage of fuculose-1-phosphate to dihydroxyacetone phosphate (DHAP) and lactaldehyde<ref>PMID:10821675</ref>.<br /> | ||
'''HpcH/HpaI aldolase''' catalyzes the conversion of 4-hydroxy-2-oxo-heptane-1,7-dioate into pyruvate and succinate. It is part of the aromatic compounds degradation<ref>PMID:17881002</ref>.<br /> | '''HpcH/HpaI aldolase''' catalyzes the conversion of 4-hydroxy-2-oxo-heptane-1,7-dioate into pyruvate and succinate. It is part of the aromatic compounds degradation<ref>PMID:17881002</ref>.<br /> | ||
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The regulation of fructose 1,6-bisphosphate aldolase is not well understood, but the understanding is every-increasing. As it is currently observed, aldolase C appears to be regulated mainly by the gene expression--the concentration of mRNA in the cytoplasm.<ref>Paolella, G, Buono, P, Mancini, F P, Izzo, P, and Salvatore, F. "Structure and expression of mouse aldolase genes." Eur. J. Biochem.. 156. (1986): 229-235.</ref> It is also known that adenosine 3',5'-cyclicmonophosphate (cAMP) affects the expression of the gene. cAMP concentration has been positively correlated with aldolase C expression. It is believed that cAMP acts upon a section of the promotor region, distal element D, causing the transcriptional promoter, NGFI-B, to bind. Once bound, the promoter activates the transcription of the gene coding for fructose bisphosphate aldolase.<ref>Buono, P, Cassano, S, Alfieri, A, Mancini, A, and Salvatore, F. "Human aldolase C gene expression is regulated by adenosine 30,50-cyclic monophosphate (cAMP) in PC12 cells." Gene. 291. (2002): 115-121.</ref> Given the inhibitory effects of an oxidant in the presence of aldolase, it is possible that this could be a mechanism of regulation of the enzyme. The deactivation that accompanies the oxidation of the surface thiol of Cys72 could be used intracellularly to slow the catalysis of the enzyme and regulate glycolysis.<ref name="kinetics" /> | The regulation of fructose 1,6-bisphosphate aldolase is not well understood, but the understanding is every-increasing. As it is currently observed, aldolase C appears to be regulated mainly by the gene expression--the concentration of mRNA in the cytoplasm.<ref>Paolella, G, Buono, P, Mancini, F P, Izzo, P, and Salvatore, F. "Structure and expression of mouse aldolase genes." Eur. J. Biochem.. 156. (1986): 229-235.</ref> It is also known that adenosine 3',5'-cyclicmonophosphate (cAMP) affects the expression of the gene. cAMP concentration has been positively correlated with aldolase C expression. It is believed that cAMP acts upon a section of the promotor region, distal element D, causing the transcriptional promoter, NGFI-B, to bind. Once bound, the promoter activates the transcription of the gene coding for fructose bisphosphate aldolase.<ref>Buono, P, Cassano, S, Alfieri, A, Mancini, A, and Salvatore, F. "Human aldolase C gene expression is regulated by adenosine 30,50-cyclic monophosphate (cAMP) in PC12 cells." Gene. 291. (2002): 115-121.</ref> Given the inhibitory effects of an oxidant in the presence of aldolase, it is possible that this could be a mechanism of regulation of the enzyme. The deactivation that accompanies the oxidation of the surface thiol of Cys72 could be used intracellularly to slow the catalysis of the enzyme and regulate glycolysis.<ref name="kinetics" /> | ||
==3D structures of aldolase== | |||
[[Aldolase 3D structures]] | |||
</StructureSection> | </StructureSection> | ||
=3D structures of Aldolase= | =3D structures of Aldolase= | ||
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**[[4moz]] – FBPA – ''Slackia heliotrinireducens''<br /> | **[[4moz]] – FBPA – ''Slackia heliotrinireducens''<br /> | ||
**[[4d2j]], [[4tu1]], [[5tjs]] – TgFBPA – ''Toxoplasma gondii''<br /> | **[[4d2j]], [[4tu1]], [[5tjs]] – TgFBPA – ''Toxoplasma gondii''<br /> | ||
**[[5u4n]] – FBPA – ''Neisseria gonorrhoeae''<br /> | |||
*FBPA complex | *FBPA complex | ||
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**[[1rv8]], [[1rvg]] – FBPA + metal – ''Thermus aquaticus''<br /> | **[[1rv8]], [[1rvg]] – FBPA + metal – ''Thermus aquaticus''<br /> | ||
**[[1b57]] – EcFBPA + oxamate<br /> | **[[1b57]] – EcFBPA + oxamate<br /> | ||
**[[3t2c]] – TnFBPA + | **[[3t2c]] – TnFBPA + DHAP<br /> | ||
**[[3t2g]] – TnFBPA (mutant) + | **[[3t2g]] – TnFBPA (mutant) + DHAP<br /> | ||
**[[3t2d]] – TnFBPA + FBP<br /> | **[[3t2d]] – TnFBPA + FBP<br /> | ||
**[[3t2e]] – TnFBPA + F6P<br /> | **[[3t2e]] – TnFBPA + F6P<br /> | ||
**[[3t2f]] – TnFBPA + EDTA + | **[[3t2f]] – TnFBPA + EDTA + DHAP<br /> | ||
**[[5tk3]], [[5tkc]] – TgFBPA + G3P + | **[[5tk3]], [[5tkc]] – TgFBPA + G3P + DHAP <br /> | ||
**[[5tkn]], [[5tkp]] – TgFBPA + P6F <br /> | **[[5tkn]], [[5tkp]] – TgFBPA + P6F <br /> | ||
**[[5tkl]] – TgFBPA + P6F + | **[[5tkl]] – TgFBPA + P6F + DHAP <br /> | ||
*Fructose–6-phosphate aldolase | *Fructose–6-phosphate aldolase | ||
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**[[1eun]], [[1fq0]] – EcKDPG<br /> | **[[1eun]], [[1fq0]] – EcKDPG<br /> | ||
**[[1fwr]] - EcKDPG (mutant)<br /> | **[[1fwr]] - EcKDPG (mutant)<br /> | ||
**[[5xse]] - ZmKDPG – ''Zymomonas mobilis''<br /> | |||
*KDPG complex | *KDPG complex | ||
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**[[1wa3]] - TmKDPG + pyruvate <br /> | **[[1wa3]] - TmKDPG + pyruvate <br /> | ||
**[[1eua]] - EcKDPG + pyruvate <br /> | **[[1eua]] - EcKDPG + pyruvate <br /> | ||
**[[5xsf]] - ZmKDPG + pyruvate <br /> | |||
*keto-deoxygluconate aldolase (KDG) | *keto-deoxygluconate aldolase (KDG) | ||
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**[[1dxe]] – EcDGA<br /> | **[[1dxe]] – EcDGA<br /> | ||
**[[1dxf]] – EcDGA + pyruvate <br /> | **[[1dxf]] – EcDGA + pyruvate <br /> | ||
*2,4-dihydroxyhept-2-ene-1,7-dioic acid aldolase | |||
**[[6bdd]] – KaALD + heme – ''Kordia algicida''<br /> | |||
**[[6bde]] – KaALD (mutant) + heme <br /> | |||
*Phospho-2-dehydro-3-deoxyheptonate aldolase | *Phospho-2-dehydro-3-deoxyheptonate aldolase | ||
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**[[4to8]] – SsFBPA <br /> | **[[4to8]] – SsFBPA <br /> | ||
**[[5u7s]] – ALD – ''Acinetobacter baumannii''<br /> | **[[5u7s]] – ALD – ''Acinetobacter baumannii''<br /> | ||
**[[5vjd]] – EcALDII + DHAP + Zn<br /> | |||
**[[5vje]] – EcALDII + glucitol bisphosphate + Zn<br /> | |||
**[[5vjf]], [[5uck]] – HpALDII + DHAP + Zn<br /> | |||
**[[5ucn]], [[5ucp]], [[5ucz]], [[5ud0]], [[5ud2]] – HpALDII (mutant) + DHAP + Zn<br /> | |||
**[[5ucs]], [[5ud1]] – HpALDII (mutant) + Zn<br /> | |||
**[[5ud3]] – HpALDII (mutant) + diphosphono-fructose + Zn<br /> | |||
**[[5ud4]] – HpALDII (mutant) + diphosphono-tagatose + Zn<br /> | |||
*Tagatose–1,6-bisphosphate aldolase | *Tagatose–1,6-bisphosphate aldolase | ||
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**[[4c24]] ,[[4c25]] – SpFPA - ''Streptococcus pneumoniae''<br /> | **[[4c24]] ,[[4c25]] – SpFPA - ''Streptococcus pneumoniae''<br /> | ||
**[[4xxf]] – FPA – ''Glaciozyma antarctica''<br /> | **[[4xxf]] – FPA – ''Glaciozyma antarctica''<br /> | ||
**[[6btd]] – BtFPA – ''Bacillus thuringiensis''<br /> | |||
**[[6btg]] – BtFPA + DHAP <br /> | |||
*Sphingosin-1-phosphate aldolase | *Sphingosin-1-phosphate aldolase | ||
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**[[3wgc]] – AjThrA (mutant)<br /> | **[[3wgc]] – AjThrA (mutant)<br /> | ||
**[[4v15]] – ThrA – ''Achromobacter xylosoxidans''<br /> | **[[4v15]] – ThrA – ''Achromobacter xylosoxidans''<br /> | ||
**[[5vye]] – PpThrA + pyridoxime derivative<br /> | |||
*Phenylserine aldolase | *Phenylserine aldolase | ||
Revision as of 09:58, 5 March 2019
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3D structures of Aldolase
Updated on 05-March-2019
Additional Resources
For additional information, see: Carbohydrate Metabolism
References
Proteopedia Page Contributors and Editors (what is this?)
Austin Drake, Alexander Berchansky, Michal Harel, David Canner, Jaime Prilusky, Sophie Mullinix