Ribose-5-phosphate isomerase
From Proteopedia
(Difference between revisions)
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==3D structures of ribose-5-phosphate isomerase== | ==3D structures of ribose-5-phosphate isomerase== | ||
| - | + | Updated on {{REVISIONDAY2}}-{{MONTHNAME|{{REVISIONMONTH}}}}-{{REVISIONYEAR}} | |
[[1xtz]] – Rpi – yeast<br /> | [[1xtz]] – Rpi – yeast<br /> | ||
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[[3l7o]] – Rpi A – ''Streptococcus mutans''<br /> | [[3l7o]] – Rpi A – ''Streptococcus mutans''<br /> | ||
| - | [[3kwm]] – Rpi A – ''Francisella tularensis''<br /> | + | [[3kwm]], [[4io1]] – Rpi A – ''Francisella tularensis''<br /> |
[[3ixq]] – Rpi A – ''Methanocaldococcus jannaschii''<br /> | [[3ixq]] – Rpi A – ''Methanocaldococcus jannaschii''<br /> | ||
[[1ks2]] - Rpi A – ''Escherichia coli''<br /> | [[1ks2]] - Rpi A – ''Escherichia coli''<br /> | ||
| Line 55: | Line 55: | ||
[[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]] - EcRpi A – ''Escherichia coli''<br /> | + | [[1lkz]], [[1ks2]] - EcRpi A – ''Escherichia coli''<br /> |
[[4gmk]] – Rpi A – ''Lactobacillus salivarius''<br /> | [[4gmk]] – Rpi A – ''Lactobacillus salivarius''<br /> | ||
[[3env]] - VvRpi A + arabinofuranose-5-phosphate<br /> | [[3env]] - VvRpi A + arabinofuranose-5-phosphate<br /> | ||
[[3enw]] - VvRpi A + ribulose-5-phosphate<br /> | [[3enw]] - VvRpi A + ribulose-5-phosphate<br /> | ||
| - | [[3uw1]] - BtRpi A + ribose-5-phosphate | + | [[3uw1]] - BtRpi A + ribose-5-phosphate<br /> |
| + | [[1o8b]] - EcRpi A + arabinose-5-phosphate<br /> | ||
===Ribose-5-phosphate isomerase B=== | ===Ribose-5-phosphate isomerase B=== | ||
Revision as of 08:42, 23 June 2013
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References
- ↑ 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
- ↑ 2.0 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
- ↑ 3.0 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
- ↑ 4.0 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
- ↑ 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
- ↑ 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
- Created with the participation of Jasmeet Bhullar.
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