Rubisco and Crop Output

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==Modifying Rubisco to Improve Crop Output==
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<StructureSection load='1aus' size='340' side='right' caption='Caption for this structure' scene=''>
<StructureSection load='1aus' size='340' side='right' caption='Caption for this structure' scene=''>
== Function ==
== Function ==
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Rubisco or ribulose- 1,5- bisphosphate carboxylase oxygenase is an enzyme that is involved in photosynthesis in plants and is specifically found in chloroplasts. (Harel, et. al) Rubisco is used in the light dependent part of the Calvin cycle. In this cycle, it catalyzes the first step of carbon fixation. It converts atmospheric carbon dioxide into useable sugar. It does this by using carbon dioxide to make an intermediate- an Enediolate intermediate, then a unstable intermediate, and then finally, 3-Phosphoglycerate. Most all of this 3-Phosphoglycerate is recycled and able to use again. It adds carbons to ribulose bisphosphate and then cleaves the 6 carbons into 2 chains with 3 carbons. Rubisco can also help to oxidize RuBP (Ribulose 1,5-bisphosphate), a sugar.
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Rubisco or ribulose- 1,5- bisphosphate carboxylase oxygenase is an enzyme that is involved in photosynthesis in plants and is specifically found in chloroplasts.Rubisco is used in the light dependent part of the Calvin cycle. In this cycle, it catalyzes the first step of carbon fixation. It converts atmospheric carbon dioxide into useable sugar. It does this by using carbon dioxide to make an intermediate- an Enediolate intermediate, then a unstable intermediate, and then finally, 3-Phosphoglycerate. Most all of this 3-Phosphoglycerate is recycled and able to use again. It adds carbons to ribulose bisphosphate and then cleaves the 6 carbons into 2 chains with 3 carbons. Rubisco can also help to oxidize RuBP (Ribulose 1,5-bisphosphate), a sugar. <ref name="Andersson">PMID:8648644</ref>
== Structure ==
== Structure ==
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Rubisco is composed of 8 large subunits and 8 small subunits. The large subunits house the binding/active sites. In Rubisco, the active site of bonding is centered around a magnesium ion. However, depending on the organism, Rubisco can also have a different shape. <scene name='81/814059/Rubisco_active_sites/1'>The magnesium ion in the center binds with lysine 201</scene> on the large subunit. This, in turn, further helps with the Calvin cycle. (Harel, et. al) “The types of residues involved are acidic residues that interact with Mg2+, basic residues and histidines that interact with phosphate and hydroxyl groups, polar residues that interact with hydroxyl groups, one hydrophobic residue, and backbone atoms of several residues.” (Harel, et. al)
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Rubisco is composed of 8 large subunits and 8 small subunits. The large subunits house the binding/active sites. In Rubisco, the active site of bonding is centered around a magnesium ion. However, depending on the organism, Rubisco can also have a different shape. <scene name='81/814059/Rubisco_active_sites/1'>The magnesium ion in the center binds with lysine 201</scene> on the large subunit. This, in turn, further helps with the Calvin cycle. “The types of residues involved are acidic residues that interact with Mg2+, basic residues and histidines that interact with phosphate and hydroxyl groups, polar residues that interact with hydroxyl groups, one hydrophobic residue, and backbone atoms of several residues.” <ref name="Andersson">PMID:8648644</ref>
This enzyme, Rubisco, only works during the day, or when there is a light source, and is turned off at night when it is dark. Carbon dioxide is attached to the binding site which turns it off and then back on again.
This enzyme, Rubisco, only works during the day, or when there is a light source, and is turned off at night when it is dark. Carbon dioxide is attached to the binding site which turns it off and then back on again.

Revision as of 22:11, 1 May 2019

Caption for this structure

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References

  1. 1.0 1.1 Andersson I. Large structures at high resolution: the 1.6 A crystal structure of spinach ribulose-1,5-bisphosphate carboxylase/oxygenase complexed with 2-carboxyarabinitol bisphosphate. J Mol Biol. 1996 May 31;259(1):160-74. PMID:8648644 doi:10.1006/jmbi.1996.0310
  2. 2.0 2.1 Sharwood RE. Engineering chloroplasts to improve Rubisco catalysis: prospects for translating improvements into food and fiber crops. New Phytol. 2017 Jan;213(2):494-510. doi: 10.1111/nph.14351. Epub 2016 Dec 9. PMID:27935049 doi:http://dx.doi.org/10.1111/nph.14351

Proteopedia Page Contributors and Editors (what is this?)

Emily T. Frankenreiter, Michal Harel

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