Difference between revisions of "Biosynthesis/ acquisition of nucleotides"

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==Important publications==
 
==Important publications==
<pubmed> 18712276 11006546 25890046</pubmed>
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<pubmed> 18712276 11006546 25890046     27329548
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</pubmed>
  
 
=Back to [[categories]]=
 
=Back to [[categories]]=

Revision as of 15:14, 24 June 2016

Parent categories
Neighbouring categories
Related categories

Genes in this functional category

Biosynthesis/ acquisition of purine nucleotides

Biosynthesis/ acquisition of purine nucleotides/ based on similarity

Purine salvage and interconversion

Biosynthesis/ acquisition of pyrimidine nucleotides

Biosynthesis/ acquisition of nucleotides/ other

Biosynthesis/ acquisition of nucleotides/ other/ based on similarity

Important publications

Jennifer Janina Stepanek, Sina Schäkermann, Michaela Wenzel, Pascal Prochnow, Julia Elisabeth Bandow
Purine biosynthesis is the bottleneck in trimethoprim-treated Bacillus subtilis.
Proteomics Clin Appl: 2016, 10(9-10);1036-1048
[PubMed:27329548] [WorldCat.org] [DOI] (I p)

Hui Zhu, Shao-Mei Yang, Zhao-Min Yuan, Rui Ban
Metabolic and genetic factors affecting the productivity of pyrimidine nucleoside in Bacillus subtilis.
Microb Cell Fact: 2015, 14;54
[PubMed:25890046] [WorldCat.org] [DOI] (I e)

Y Zhang, M Morar, S E Ealick
Structural biology of the purine biosynthetic pathway.
Cell Mol Life Sci: 2008, 65(23);3699-724
[PubMed:18712276] [WorldCat.org] [DOI] (I p)

T J Kappock, S E Ealick, J Stubbe
Modular evolution of the purine biosynthetic pathway.
Curr Opin Chem Biol: 2000, 4(5);567-72
[PubMed:11006546] [WorldCat.org] [DOI] (P p)


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