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Nitrogenase

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<StructureSection load="1N2C" size="350" color="white" caption="Nitrogenase complex: α (grey and green) and β (pink and yellow) chains, nitrogenase iron protein ( purple,cyan, red and gold), showing Fe-Mo-S cluster complex with ADP, adipic acid, AlF4, Ca+2 and Mg+2 ions [[1n2c]]">
<StructureSection load="1N2C" size="350" color="white" caption="Nitrogenase complex: α (grey and green) and β (pink and yellow) chains, nitrogenase iron protein ( purple,cyan, red and gold), showing Fe-Mo-S cluster complex with ADP, adipic acid, AlF4, Ca+2 and Mg+2 ions [[1n2c]]">
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__TOC__
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==Function==
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'''Nitrogenase''' (Nase) is an enzyme that fixes atmospheric nitrogen (N<sub>2</sub>) into ammonia. Though abundantly present in the atmosphere, most organisms cannot utilize N<sub>2</sub> directly, and must instead take it in through other forms, like ammonia or nitrate. The triple bond in N<sub>2</sub> is highly resistant to changes in oxidation state, and nitrogenases, found only in nitrogen-fixing bacteria, are the only proteins capable of reducing N<sub>2</sub> to ammonia.
'''Nitrogenase''' (Nase) is an enzyme that fixes atmospheric nitrogen (N<sub>2</sub>) into ammonia. Though abundantly present in the atmosphere, most organisms cannot utilize N<sub>2</sub> directly, and must instead take it in through other forms, like ammonia or nitrate. The triple bond in N<sub>2</sub> is highly resistant to changes in oxidation state, and nitrogenases, found only in nitrogen-fixing bacteria, are the only proteins capable of reducing N<sub>2</sub> to ammonia.
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For these reasons, binding of Fe protein to FeMo protein results in hydrolysis of ATP. Additionally, the 4Fe:4S cluster is lowered close enough to the metal-sulfur clusters of the FeMo protein that electron transfer can occur. All three clusters found in the Fe protein-FeMo protein complex can be seen <scene name='Sandbox_10/1n2c_clusters/2'>here</scene>. Once the electrons have passed from the 4Fe:4S cluster of the Fe protein to the 8Fe:7S cluster of the FeMo protein, they then transfer to the 7Fe:Mo:9S:homocitrate:X cluster where X is an unidentified light atom. It is at this cluster where reduction of N<sub>2</sub> and H<sup>+</sup> occur. The exact mechanism of reduction, however, is still unknown.
For these reasons, binding of Fe protein to FeMo protein results in hydrolysis of ATP. Additionally, the 4Fe:4S cluster is lowered close enough to the metal-sulfur clusters of the FeMo protein that electron transfer can occur. All three clusters found in the Fe protein-FeMo protein complex can be seen <scene name='Sandbox_10/1n2c_clusters/2'>here</scene>. Once the electrons have passed from the 4Fe:4S cluster of the Fe protein to the 8Fe:7S cluster of the FeMo protein, they then transfer to the 7Fe:Mo:9S:homocitrate:X cluster where X is an unidentified light atom. It is at this cluster where reduction of N<sub>2</sub> and H<sup>+</sup> occur. The exact mechanism of reduction, however, is still unknown.
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==3D structure of Nitrogenase==
==3D structure of Nitrogenase==
[[Nitrogenase 3D structures]]
[[Nitrogenase 3D structures]]
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</StructureSection>
</StructureSection>
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==3D structure of Nitrogenase==
 
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Updated on {{REVISIONDAY2}}-{{MONTHNAME|{{REVISIONMONTH}}}}-{{REVISIONYEAR}}
 
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{{#tree:id=OrganizedByTopic|openlevels=0|
 
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*Nase Mo-Fe
 
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**[[3pdi]] – AvNase α+β subunit [Fe4S4 Fe8S9] – ''Azotobacter vinelandii''<br />
 
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**[[2kic]] – AvNase γ subunit – NMR<br />
 
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**[[3k1a]], [[1m1n]], [[2min]], [[3min]], [[3u7q]] – AvNase α+β subunit [CFe7MoS9 Fe8S7]<br />
 
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**[[4xpi]], [[5cx1]] - AvNase + (mutant) subunit [CFe7MoS9 Fe8S7]<br />
 
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**[[4tku]], [[5bvg]] - AvNase α+β subunit [CFe7MoS9 Fe8S7 Fe2]<br />
 
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**[[6o7o]], [[6o7m]], [[6o7l]], [[6o7p]], [[6o7q]], [[6o7r]] - AvNase + (mutant) subunit [CFe7MoS9 Fe8S7 Fe2]<br />
 
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**[[6o7s]] - AvNase + (mutant) subunit [CFe7MoS9 Fe6S7 Fe2]<br />
 
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**[[6op4]] - AvNase + subunit [CFe7MoS9 Fe8S7 Mg] <br />
 
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**[[4tkv]], [[5bvh]]- AvNase α+β subunit [CFe7MoS9 Fe8S7 Fe2] + CO <br />
 
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**[[6op1]] - AvNase + subunit [CFe7MoS9 Fe8S7 Mg] + CO <br />
 
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**[[6op2]], [[60p3]] - AvNase + subunit [CFe7MoS9 Fe8S7 Se] + <br />
 
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**[[4wza]] - AvNase α+β subunit [CFe7MoS9 Fe8S7 Fe4S4 Fe2] + ADP + ACP<br />
 
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**[[4wzb]] - AvNase α+β subunit [CFe7MoS9 Fe8S7 Fe4S4 Fe2] + ACP<br />
 
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**[[4nd8]], [[6bbl]], [[6cdk]] - AvNase α+β subunit [CFe7MoS9 Fe8S7 Fe+3]<br />
 
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**[[1l5h]] - AvNase α+β subunit [Fe8S7]<br />
 
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**[[1h1l]], [[1qgu]], [[1qh8]] - KpNase α+β subunit [Fe7MoS9 Fe8S7] – ''Klebsiella pneumoniae''<br />
 
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**[[1qh1]] - KpNase α+β subunit + iron protein 1 [Fe7MoS9 Fe8S7]<br />
 
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**[[1fp4]] - AvNase α+β subunit (mutant) [Fe7MoS9 Fe8S8]<br />
 
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**[[1mio]] - CpNase α+β subunit (mutant) [Fe7MoS9 Fe8S8] - ''Clostridium pasteurianum''<br />
 
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**[[4wes]], [[4wn9]], [[4wna]], [[5vpw]], [[5vq3]], [[5vq4]] - CpNase α+β subunit [CFe7MoS9 Fe8S7 Fe2]<br />
 
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**[[2afh]], [[1m1y]], [[1g20]] - AvNase α+β subunit + iron protein 1 [Fe4S4 Fe7MoS9 Fe8S7]<br />
 
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**[[2afi]], [[4wzb]], [[1m34]], [[1g21]] - AvNase α+β subunit + iron protein 1 [Fe4S4 Fe7MoS9 Fe8S7] + nucleotide<br />
 
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**[[1n2c]] - AvNase α+β subunit + iron protein 1 [Fe4S4 Fe7MoS9 Fe8S7] + AlF4<br />
 
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**[[5koh]], [[5koj]] – AvNase + subunit iron protein 1 [FeS] [CFe7MoS9 Fe8S7 Fe2] – ''Gluconacetobacter diazotrophicus'' <br />
 
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*Nase iron protein
 
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**[[2c8v]] – AvNase iron protein 1 [FeS]<br />
 
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**[[1g1m]], [[1g5p]], [[2nip]], [[6o0b]], [[6n4k]], [[6n4j]] - AvNase iron protein 1 [Fe4S4]<br />
 
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**[[1fp6]], [[1nip]], [[6n4m]], [[6n4l] - AvNase iron protein 1 [Fe4S4] + ADP<br />
 
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**[[1xcp]], [[1xd8]], [[1xdb]], [[1rw4]], [[1de0]] - AvNase iron protein 1 (mutant) [Fe4S4]<br />
 
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**[[6q93]] - AvNase iron protein 1 [Fe4S4] + MgADP<br />
 
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**[[1xd9]] - AvNase iron protein 1 (mutant) [Fe4S4] + MgADP<br />
 
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**[[1cp2]] - CpNase iron protein 1 [Fe4S4] <br />
 
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**[[6nzj]] - Nase iron protein 1 [Fe4S4] – ''Methanosarcina acetivorans''<br />
 
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*Nase V-Fe protein
 
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**[[5n6y]], [[6fea]] – AvNase α+β+δ subunit [Fe7S8V + Fe8S7] + CO3<br />
 
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}}
 
== References ==
== References ==
<references/>
<references/>
[[Category:Topic Page]]
[[Category:Topic Page]]

Current revision

Nitrogenase complex: α (grey and green) and β (pink and yellow) chains, nitrogenase iron protein ( purple,cyan, red and gold), showing Fe-Mo-S cluster complex with ADP, adipic acid, AlF4, Ca+2 and Mg+2 ions 1n2c

Drag the structure with the mouse to rotate

References

  1. Schindelin H, Kisker C, Schlessman JL, Howard JB, Rees DC. Structure of ADP x AIF4(-)-stabilized nitrogenase complex and its implications for signal transduction. Nature. 1997 May 22;387(6631):370-6. PMID:9163420 doi:10.1038/387370a0

Proteopedia Page Contributors and Editors (what is this?)

Michal Harel, Alexander Berchansky, Eran Hodis, David Canner, Joel L. Sussman

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