User:Arthur Migliatti/Sandbox1
From Proteopedia
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To reduce other proteins, first happens an attack from Cys32, creating an intermolecular dissulfide bond, represented <scene name='91/911850/C32_s-s_c206/1'>here</scene> between residue Cys32 from Trx1 and residue Cys206 from '''[[MsrA]]'''. After it, residue Cys35 attacks Cys32, creating a dissulfide bond between the two cysteines in Trx1's catalytic site. This is the <scene name='91/911850/Trx_cys_-_oxidized_-_diss_bond/4'>oxidized form of Trx1</scene>. | To reduce other proteins, first happens an attack from Cys32, creating an intermolecular dissulfide bond, represented <scene name='91/911850/C32_s-s_c206/1'>here</scene> between residue Cys32 from Trx1 and residue Cys206 from '''[[MsrA]]'''. After it, residue Cys35 attacks Cys32, creating a dissulfide bond between the two cysteines in Trx1's catalytic site. This is the <scene name='91/911850/Trx_cys_-_oxidized_-_diss_bond/4'>oxidized form of Trx1</scene>. | ||
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| - | <scene name='91/911850/Dimer/1'>dissulfide bond between the Cys73 residue of each monomer</scene> | ||
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| - | <scene name='91/911850/Trx-cys-red-dislig-s-ca/2'>Trx reduzida distância de ligação S - S e Ca - Ca</scene> | ||
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| - | <scene name='91/911850/Trx-oxi-dislig-s-s_-_ca-ca/1'>Trx oxi dist lig S - S e Ca - Ca</scene> | ||
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| - | <scene name='91/911850/Trx-cys-red-dislig-s-ca-ang-di/1'>red ang died ca s s ca</scene> | ||
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| - | <scene name='91/911850/Oxi-ang-died-ca-s-s-ca/1'>oxi-ang-died-Ca-S-S-Ca</scene> | ||
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| - | <scene name='91/911850/Oxi-ang-ca35-s35-ca32/1'>oxi ang Ca35 - S35 - Ca32</scene> | ||
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| - | <scene name='91/911850/Red-ang-ca35-s35-ca32/1'>red ang Ca35 - S35 - Ca32</scene> | ||
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| - | <scene name='91/911850/Snocys62/1'>SNOCys62</scene> | ||
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| - | <scene name='91/911850/Snocys69/1'>SNOCys69</scene> | ||
S-nitrosation of Trx on Cys69 enhances its antiapoptotic function in some cases, although its not necessary for it. | S-nitrosation of Trx on Cys69 enhances its antiapoptotic function in some cases, although its not necessary for it. | ||
<ref>Tao, L.; Gao, E.; Bryan, N. S.; Qu, Y.; Liu, H.-R.; Hu, A.; Christopher, T. A.; Lopez, B. L.; Yodoi, J.; Koch, W. J.; Feelisch, M.; Ma, X. L. Cardioprotective Effects of Thioredoxin in Myocardial Ischemia and the Reperfusion Role of S-Nitrosation. Proc Natl Acad Sci U S A 2004, 101 (31), 11471–11476. https://doi.org/10.1073/pnas.0402941101. | <ref>Tao, L.; Gao, E.; Bryan, N. S.; Qu, Y.; Liu, H.-R.; Hu, A.; Christopher, T. A.; Lopez, B. L.; Yodoi, J.; Koch, W. J.; Feelisch, M.; Ma, X. L. Cardioprotective Effects of Thioredoxin in Myocardial Ischemia and the Reperfusion Role of S-Nitrosation. Proc Natl Acad Sci U S A 2004, 101 (31), 11471–11476. https://doi.org/10.1073/pnas.0402941101. | ||
</ref> | </ref> | ||
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Cytosolic, nuclear, mithocondrial and secreted. Fazer distinção antes sobre a Trx1 e a Trx2. Não sei se a Trx2 também possui sítio ativo nesse lugar. | Cytosolic, nuclear, mithocondrial and secreted. Fazer distinção antes sobre a Trx1 e a Trx2. Não sei se a Trx2 também possui sítio ativo nesse lugar. | ||
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== Structure == | == Structure == | ||
Revision as of 01:11, 19 June 2022
Introduction
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References
- ↑ Lu, J.; Holmgren, A. The Thioredoxin Antioxidant System. Free Radical Biology and Medicine 2014, 66, 75–87. https://doi.org/10.1016/j.freeradbiomed.2013.07.036.
- ↑ Tao, L.; Gao, E.; Bryan, N. S.; Qu, Y.; Liu, H.-R.; Hu, A.; Christopher, T. A.; Lopez, B. L.; Yodoi, J.; Koch, W. J.; Feelisch, M.; Ma, X. L. Cardioprotective Effects of Thioredoxin in Myocardial Ischemia and the Reperfusion Role of S-Nitrosation. Proc Natl Acad Sci U S A 2004, 101 (31), 11471–11476. https://doi.org/10.1073/pnas.0402941101.
- ↑ Holmgren, A. Thioredoxin Structure and Mechanism: Conformational Changes on Oxidation of the Active-Site Sulfhydryls to a Disulfide. Structure 1995, 3 (3), 239–243. https://doi.org/10.1016/S0969-2126(01)00153-8.
- ↑ Laurent, T. C.; Moore, E. C.; Reichard, P. ENZYMATIC SYNTHESIS OF DEOXYRIBONUCLEOTIDES. IV. ISOLATION AND CHARACTERIZATION OF THIOREDOXIN, THE HYDROGEN DONOR FROM ESCHERICHIA COLI B. J Biol Chem 1964, 239, 3436–3444.
- ↑ Tao, L.; Gao, E.; Bryan, N. S.; Qu, Y.; Liu, H.-R.; Hu, A.; Christopher, T. A.; Lopez, B. L.; Yodoi, J.; Koch, W. J.; Feelisch, M.; Ma, X. L. Cardioprotective Effects of Thioredoxin in Myocardial Ischemia and the Reperfusion Role of S-Nitrosation. Proc Natl Acad Sci U S A 2004, 101 (31), 11471–11476. https://doi.org/10.1073/pnas.0402941101.
