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
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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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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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En esta nueva visión vemos <scene name='42/428167/Detalle_centro_activo/1'>la relación entre los aminoácidos ácidos del centro activo y el pseudosubstrato (superfície de puntos)</scene> Vemos como los dos aminoácidos ácidos caen en el centro del glícido y atacan la parte central. Por tanto dado el "diseño" de este centro activo es imposible que pueda hidrolizar diglícidos con eficiencia
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
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

Revision as of 15:51, 31 October 2014

Amilasa con los aminoácidos del centro activo (rojo) (PDB code 1cpu)

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3D structures of amylase (Updated on 31-October-2014)

References

  1. 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
  2. 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. 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. 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. 5.0 5.1 PPMID: 17713601
  6. 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
  7. Cite error: Invalid <ref> tag; no text was provided for refs named book
  8. 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

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Gabriel Pons

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