Ribose-5-phosphate isomerase

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Ribose 5-Phosphate Isomerase plays a huge role in producing nucleotides and cofactors from ribose 5-phosphate in the pentose phosphate pathway and calvin cycle. Since this enzyme plays a major role in both eukaryotic and prokaryotic organisms it is a valuable enzyme and implies that RpiA subfamilies have a significant evolutionary origin<ref name="rpi6">PMID:19214439</ref>.
Ribose 5-Phosphate Isomerase plays a huge role in producing nucleotides and cofactors from ribose 5-phosphate in the pentose phosphate pathway and calvin cycle. Since this enzyme plays a major role in both eukaryotic and prokaryotic organisms it is a valuable enzyme and implies that RpiA subfamilies have a significant evolutionary origin<ref name="rpi6">PMID:19214439</ref>.
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==3D structures of ribose-5-phosphate isomerase==
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[[Ribose-5-phosphate isomerase 3D structures]]
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</StructureSection>
</StructureSection>
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**[[1xtz]] – Rpi – yeast<br />
**[[1xtz]] – Rpi – yeast<br />
**[[1uj4]] – TtRpi – ''Thermus thermophilus''<br />
**[[1uj4]] – TtRpi – ''Thermus thermophilus''<br />
-
**[[1uj5]] - TtRpi + ribose-5-phosphate<br />
+
**[[1uj5]], [[3k7s]] - TtRpi + ribose-5-phosphate<br />
**[[1uj6]] - TtRpi + arabinose-5-phosphate<br />
**[[1uj6]] - TtRpi + arabinose-5-phosphate<br />
 +
**[[3m1p]] - TtRpi + phosphate<br />
**[[1lk5]] – PhRpi – ''Pyrococcus horikoshii''<br />
**[[1lk5]] – PhRpi – ''Pyrococcus horikoshii''<br />
**[[1lk7]] - PhRpi + phosphono-erythronate<br />
**[[1lk7]] - PhRpi + phosphono-erythronate<br />
**[[3k7o]] – TcRpi – ''Trypanosoma cruzi''<br />
**[[3k7o]] – TcRpi – ''Trypanosoma cruzi''<br />
**[[3k7p]] – TcRpi (mutant)<br />
**[[3k7p]] – TcRpi (mutant)<br />
-
**[[3k7s]] - TtRpi + ribose-5-phosphate<br />
 
-
**[[3m1p]] - TtRpi + phosphate<br />
 
**[[2f8m]] – Rpi – ''Plasmodium falciparum''<br />
**[[2f8m]] – Rpi – ''Plasmodium falciparum''<br />
**[[5ifz]], [[5jla]] – Rpi – ''Brucella melitensis''<br />
**[[5ifz]], [[5jla]] – Rpi – ''Brucella melitensis''<br />
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**[[3l7o]] – Rpi A – ''Streptococcus mutans''<br />
**[[3l7o]] – Rpi A – ''Streptococcus mutans''<br />
-
**[[3kwm]], [[4io1]] – Rpi A – ''Francisella tularensis''<br />
+
**[[3kwm]], [[4io1]] – FtRpi A – ''Francisella tularensis''<br />
 +
**[[4m8l]] - FtRpi A + ribulose-5-phosphate<br />
**[[3ixq]] – Rpi A – ''Methanocaldococcus jannaschii''<br />
**[[3ixq]] – Rpi A – ''Methanocaldococcus jannaschii''<br />
-
**[[1ks2]] - EcRpi A – ''Escherichia coli''<br />
+
**[[1ks2]], [[1lkz]] - EcRpi A – ''Escherichia coli''<br />
 +
**[[1o8b]] - EcRpi A + arabinose-5-phosphate<br />
**[[1o8b]] - EcRpi A + arabinose-5-phosphate<br />
**[[1o8b]] - EcRpi A + arabinose-5-phosphate<br />
**[[3enq]] – VvRpi A – ''Vibrio vulnificus''<br />
**[[3enq]] – VvRpi A – ''Vibrio vulnificus''<br />
 +
**[[3env]] - VvRpi A + arabinofuranose-5-phosphate<br />
 +
**[[3enw]] - VvRpi A + ribulose-5-phosphate<br />
**[[3hhe]] – Rpi A – ''Bartonella henselae''<br />
**[[3hhe]] – Rpi A – ''Bartonella henselae''<br />
**[[1m0s]] – Rpi A – ''Haemophilus influenzae''<br />
**[[1m0s]] – Rpi A – ''Haemophilus influenzae''<br />
**[[3u7j]] – BtRpl A – ''Burkholderia thailandensis''<br />
**[[3u7j]] – BtRpl A – ''Burkholderia thailandensis''<br />
-
**[[1lkz]], [[1ks2]] - EcRpi A – ''Escherichia coli''<br />
+
**[[3uw1]] - BtRpi A + ribose-5-phosphate<br />
**[[4x84]] – Rpi A – ''Pseudomonas aeruginosa''<br />
**[[4x84]] – Rpi A – ''Pseudomonas aeruginosa''<br />
**[[4gmk]] – Rpi A – ''Lactobacillus salivarius''<br />
**[[4gmk]] – Rpi A – ''Lactobacillus salivarius''<br />
**[[5uf2]] – NgRpi A – ''Neisseria gonorrhoeae''<br />
**[[5uf2]] – NgRpi A – ''Neisseria gonorrhoeae''<br />
-
**[[3env]] - VvRpi A + arabinofuranose-5-phosphate<br />
 
-
**[[3enw]] - VvRpi A + ribulose-5-phosphate<br />
 
-
**[[4m8l]] - FtRpi A + ribulose-5-phosphate<br />
 
-
**[[3uw1]] - BtRpi A + ribose-5-phosphate<br />
 
-
**[[1o8b]] - EcRpi A + arabinose-5-phosphate<br />
 
**[[6eep]] - LpRpi A - ''Legionella pneumophila''<br />
**[[6eep]] - LpRpi A - ''Legionella pneumophila''<br />
**[[6mc0]] - LpRpi A + ribulose-5-phosphate + ribose-5-phosphate<br />
**[[6mc0]] - LpRpi A + ribulose-5-phosphate + ribose-5-phosphate<br />
 +
**[[6j1k]] – Rpi A – ''Ochrobacterium''<br />
*Ribose-5-phosphate isomerase B
*Ribose-5-phosphate isomerase B
**[[3he8]] - CtRpi B – ''Clostridium thermocellum''<br />
**[[3he8]] - CtRpi B – ''Clostridium thermocellum''<br />
 +
**[[3ph3]] – CtRpi B + ribose <br />
 +
**[[3ph4]] - CtRpi B + allose<br />
 +
**[[3hee]] - CtRpi B + ribose-5-phosphate<br />
**[[2vvr]], [[1nn4]] – EcRpi B <br />
**[[2vvr]], [[1nn4]] – EcRpi B <br />
**[[1o1x]] – Rpi B – ''Thermotoga maritima''<br />
**[[1o1x]] – Rpi B – ''Thermotoga maritima''<br />
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**[[4egs]] – Rpi B N terminal – ''Thermoanaerobacter tengcongensis''<br />
**[[4egs]] – Rpi B N terminal – ''Thermoanaerobacter tengcongensis''<br />
**[[4em8]] – Rpi B – ''Anaplasma phagocytophilum''<br />
**[[4em8]] – Rpi B – ''Anaplasma phagocytophilum''<br />
-
**[[3ph3]] – CtRpi B + ribose <br />
 
-
**[[3ph4]] - CtRpi B + allose<br />
 
-
**[[3hee]] - CtRpi B + ribose-5-phosphate<br />
 
**[[2vvo]] – MtRpi B + allose-6-phosphate – ''Mycobacterium tuberculosis''<br />
**[[2vvo]] – MtRpi B + allose-6-phosphate – ''Mycobacterium tuberculosis''<br />
**[[1usl]] - MtRpi B + phosphate<br />
**[[1usl]] - MtRpi B + phosphate<br />

Revision as of 08:48, 18 December 2019

Ribose-5-phosphate isomerase A dimer complex with ribulose-5-phosphate, 3enw

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3D structures of ribose-5-phosphate isomerase

Updated on 18-December-2019

References

  1. 1.0 1.1 1.2 1.3 Zhang R, Andersson CE, Savchenko A, Skarina T, Evdokimova E, Beasley S, Arrowsmith CH, Edwards AM, Joachimiak A, Mowbray SL. Structure of Escherichia coli ribose-5-phosphate isomerase: a ubiquitous enzyme of the pentose phosphate pathway and the Calvin cycle. Structure. 2003 Jan;11(1):31-42. PMID:12517338
  2. 2.0 2.1 Kim TG, Kwon TH, Min K, Dong MS, Park YI, Ban C. Crystal structures of substrate and inhibitor complexes of ribose 5-phosphate isomerase A from Vibrio vulnificus YJ016. Mol Cells. 2009 Jan;27(1):99-103. Epub 2009 Feb 5. PMID:19214439 doi:10.1007/s10059-009-0010-6
  3. 3.0 3.1 3.2 Huck JH, Verhoeven NM, Struys EA, Salomons GS, Jakobs C, van der Knaap MS. Ribose-5-phosphate isomerase deficiency: new inborn error in the pentose phosphate pathway associated with a slowly progressive leukoencephalopathy. Am J Hum Genet. 2004 Apr;74(4):745-51. Epub 2004 Feb 25. PMID:14988808 doi:10.1086/383204
  4. 4.0 4.1 Gengenbacher M, Fitzpatrick TB, Raschle T, Flicker K, Sinning I, Muller S, Macheroux P, Tews I, Kappes B. Vitamin B6 biosynthesis by the malaria parasite Plasmodium falciparum: biochemical and structural insights. J Biol Chem. 2006 Feb 10;281(6):3633-41. Epub 2005 Dec 8. PMID:16339145 doi:10.1074/jbc.M508696200
  5. Salyers AA, Amabile-Cuevas CF. Why are antibiotic resistance genes so resistant to elimination? Antimicrob Agents Chemother. 1997 Nov;41(11):2321-5. PMID:9371327
  6. Kim TG, Kwon TH, Min K, Dong MS, Park YI, Ban C. Crystal structures of substrate and inhibitor complexes of ribose 5-phosphate isomerase A from Vibrio vulnificus YJ016. Mol Cells. 2009 Jan;27(1):99-103. Epub 2009 Feb 5. PMID:19214439 doi:10.1007/s10059-009-0010-6


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