Sandbox Wabash 06 Fumarase

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Fumarase (fumararte hydratase) catalyzes the hydration of fumarate (double bonded) to form malate. The hydration reaction, which includes a carbanion transition state, has OH- addition occur before H+. Fumarase can be found in the urea cycle, an important biochemical reaction used to produce urea. <ref>Voet, Donald, Judith G. Voet, and Charlotte W. Pratt. Fundamentals of Biochemistry: Life at the Molecular Level. 3rd ed. Aptara. Print.</ref> Fumarase C enzymes are tetrameric, non-iron containing, and are specificially found in E. coli. They are known to be similar to mitochondrial enzymes found in eukaryotic cells.<ref>PMID:9098893</ref>
Fumarase (fumararte hydratase) catalyzes the hydration of fumarate (double bonded) to form malate. The hydration reaction, which includes a carbanion transition state, has OH- addition occur before H+. Fumarase can be found in the urea cycle, an important biochemical reaction used to produce urea. <ref>Voet, Donald, Judith G. Voet, and Charlotte W. Pratt. Fundamentals of Biochemistry: Life at the Molecular Level. 3rd ed. Aptara. Print.</ref> Fumarase C enzymes are tetrameric, non-iron containing, and are specificially found in E. coli. They are known to be similar to mitochondrial enzymes found in eukaryotic cells.<ref>PMID:9098893</ref>
== Debate ==
== Debate ==
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<scene name='72/726382/His188_and_his129/1'>Two mutant forms</scene>of fumarase C from E. coli have been made using PCR and recombinant DNA. Two different carboxylic acid binding sites (A+B) were observed in the crystal structures of the WT inhibited forms of the enzyme. The <scene name='72/726382/H188n/1'>H188N mutant </scene>has L-malate bound at active site A.
<scene name='72/726382/His188_and_his129/1'>Two mutant forms</scene>of fumarase C from E. coli have been made using PCR and recombinant DNA. Two different carboxylic acid binding sites (A+B) were observed in the crystal structures of the WT inhibited forms of the enzyme. The <scene name='72/726382/H188n/1'>H188N mutant </scene>has L-malate bound at active site A.

Revision as of 23:43, 29 February 2016

Mutations in Fumerase Active Site

Caption for this structure

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References

  1. Voet, Donald, Judith G. Voet, and Charlotte W. Pratt. Fundamentals of Biochemistry: Life at the Molecular Level. 3rd ed. Aptara. Print.
  2. Weaver T, Lees M, Banaszak L. Mutations of fumarase that distinguish between the active site and a nearby dicarboxylic acid binding site. Protein Sci. 1997 Apr;6(4):834-42. PMID:9098893
  3. Weaver T, Lees M, Banaszak L. Mutations of fumarase that distinguish between the active site and a nearby dicarboxylic acid binding site. Protein Sci. 1997 Apr;6(4):834-42. PMID:9098893
  4. Weaver T, Lees M, Banaszak L. Mutations of fumarase that distinguish between the active site and a nearby dicarboxylic acid binding site. Protein Sci. 1997 Apr;6(4):834-42. PMID:9098893
  5. Weaver T, Lees M, Banaszak L. Mutations of fumarase that distinguish between the active site and a nearby dicarboxylic acid binding site. Protein Sci. 1997 Apr;6(4):834-42. PMID:9098893
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