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User:Gabriel Pons/Sandbox 2
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La amilasa pancreática es una endoglicosidasa que hidroliza enlaces alfa 1-4 de poliglícidos de glucosa | La amilasa pancreática es una endoglicosidasa que hidroliza enlaces alfa 1-4 de poliglícidos de glucosa | ||
| - | para entender porqué solamente ataca los enlaces interiores del poliglícido es necesario ver cómo se coloca el poliglícido al unirse al centro activo . 1cpu muestra la estructura de la amilasa pancreática . El <scene name='42/428167/Centro_activo/2'>centro activo </scene>se muestra ocupado por 5 unidades glicídicas que son abrazadas por la hendidura del centro activo .The <scene name='Sandbox_182/Domain_a/1'> B domain</scene> consists of a sheet of four anti-parallel β-strands with a pair of anti-parallel β-strands. Long loops are observed between the β-strands. Located within the B domain is the <scene name='Sandbox_182/Trio/1'>binding site</scene> for Ca<sup>2+</sup>-Na<sup>+</sup>-Ca<sup>2+</sup>. <scene name='Sandbox_182/Domain_c/1'>Domain C </scene>consisting of eight β-strands is assembled into a globular unit forming a Greek key motif. It also holds the <scene name='Sandbox_182/Caiii/1'>third </scene>Ca<sup>2+</sup> binding site in association with domain A. Positioned on the C-terminal side of the β-strands of the (β/α)<sub>8</sub>-barrel in domain A is the active site. The catalytic residues involved for the BSTA active site are | + | para entender porqué solamente ataca los enlaces interiores del poliglícido es necesario ver cómo se coloca el poliglícido al unirse al centro activo . 1cpu muestra la estructura de la amilasa pancreática . El <scene name='42/428167/Centro_activo/2'>centro activo </scene>se muestra ocupado por 5 unidades glicídicas que son abrazadas por la hendidura del centro activo . En rojo se muestran los dos aminoácidos principales que participan en la catálisis, aspártico 197 y glutámico 233 |
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| + | The <scene name='Sandbox_182/Domain_a/1'> B domain</scene> consists of a sheet of four anti-parallel β-strands with a pair of anti-parallel β-strands. Long loops are observed between the β-strands. Located within the B domain is the <scene name='Sandbox_182/Trio/1'>binding site</scene> for Ca<sup>2+</sup>-Na<sup>+</sup>-Ca<sup>2+</sup>. <scene name='Sandbox_182/Domain_c/1'>Domain C </scene>consisting of eight β-strands is assembled into a globular unit forming a Greek key motif. It also holds the <scene name='Sandbox_182/Caiii/1'>third </scene>Ca<sup>2+</sup> binding site in association with domain A. Positioned on the C-terminal side of the β-strands of the (β/α)<sub>8</sub>-barrel in domain A is the active site. The catalytic residues involved for the BSTA active site are | ||
<scene name='Sandbox_182/Active_site/1'>Asp234, Glu264, and Asp331</scene>. The residues are identical to other α-amylases, yet there are positional differences which reflect the flexible nature of catalytic resides. | <scene name='Sandbox_182/Active_site/1'>Asp234, Glu264, and Asp331</scene>. The residues are identical to other α-amylases, yet there are positional differences which reflect the flexible nature of catalytic resides. | ||
<scene name='Sandbox_182/Trio/1'>CaII and CaI with Na</scene> found in the interior of domain B and <scene name='Sandbox_182/Caiii/2'>CaIII </scene>at the interface of domain A and C, constitute the metal ion binding sites. All α-amylases contain one strongly conserved Ca<sup>2+</sup> ion for structural integrity and enzymatic activity.<ref name="chloride">PMID: 12021442</ref> CaI is consistent in α-amylases, however there are structural differences between the linear trio of CaI, CaII and Na in other enzymes. CaIII acts as a bridge between two loops, one from α6 of domain A, and one between β1 and β2 of domain C. | <scene name='Sandbox_182/Trio/1'>CaII and CaI with Na</scene> found in the interior of domain B and <scene name='Sandbox_182/Caiii/2'>CaIII </scene>at the interface of domain A and C, constitute the metal ion binding sites. All α-amylases contain one strongly conserved Ca<sup>2+</sup> ion for structural integrity and enzymatic activity.<ref name="chloride">PMID: 12021442</ref> CaI is consistent in α-amylases, however there are structural differences between the linear trio of CaI, CaII and Na in other enzymes. CaIII acts as a bridge between two loops, one from α6 of domain A, and one between β1 and β2 of domain C. | ||
Revision as of 15:34, 31 October 2014
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3D structures of amylase (Updated on 31-October-2014)
References
- ↑ 1.0 1.1 1.2 Aghajari N, Feller G, Gerday C, Haser R. Structural basis of alpha-amylase activation by chloride. Protein Sci. 2002 Jun;11(6):1435-41. PMID:12021442
- ↑ Maurus R, Begum A, Williams LK, Fredriksen JR, Zhang R, Withers SG, Brayer GD. Alternative catalytic anions differentially modulate human alpha-amylase activity and specificity(,). Biochemistry. 2008 Mar 18;47(11):3332-44. Epub 2008 Feb 20. PMID:18284212 doi:10.1021/bi701652t
- ↑ 3.0 3.1 Maurus R, Begum A, Williams LK, Fredriksen JR, Zhang R, Withers SG, Brayer GD. Alternative catalytic anions differentially modulate human alpha-amylase activity and specificity(,). Biochemistry. 2008 Mar 18;47(11):3332-44. Epub 2008 Feb 20. PMID:18284212 doi:10.1021/bi701652t
- ↑ 4.0 4.1 4.2 4.3 Kuriki T, Imanaka T. The concept of the alpha-amylase family: structural similarity and common catalytic mechanism. J Biosci Bioeng. 1999;87(5):557-65. PMID:16232518
- ↑ 5.0 5.1 PPMID: 17713601
- ↑ Franco OL, Rigden DJ, Melo FR, Grossi-De-Sa MF. Plant alpha-amylase inhibitors and their interaction with insect alpha-amylases. Eur J Biochem. 2002 Jan;269(2):397-412. PMID:11856298
- ↑ Cite error: Invalid
<ref>tag; no text was provided for refs namedbook - ↑ Yang RW, Shao ZX, Chen YY, Yin Z, Wang WJ. Lipase and pancreatic amylase activities in diagnosis of acute pancreatitis in patients with hyperamylasemia. Hepatobiliary Pancreat Dis Int. 2005 Nov;4(4):600-3. PMID:16286272
