Angiotensin-Converting Enzyme: Difference between revisions

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<StructureSection load='1o8a' size='500' side='right' scene='Angiotensin-Converting_Enzyme/Ace_opening/1' caption=''>
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==Biological Role==
==Biological Role==
[[Image: Renin_system.png|470px|left|thumb| Renin-Angiotensin-Aldosterone System Schematic]]
[[Image: Renin_system.png|470px|left|thumb| Renin-Angiotensin-Aldosterone System Schematic]]
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The C-Domain active site is strongly activated by chloride ion.<ref> PMID:7794265</ref> Two buried chloride ions are found in the ACE1 crystal structure. The first is about 21 angstroms from the zinc ion and is<scene name='Angiotensin-Converting_Enzyme/Chlorine_1/1'> bound to Arg 489, Arg 186, Trp 485 </scene>and is surrounded by a hydrophobic shell of four tryptophans. The second chloride ion is located <scene name='Angiotensin-Converting_Enzyme/Chlorine_2/3'>10 angstroms away from the zinc ion and is bound to Arg 522 and Tyr 224</scene>. It is believed that the first chloride ion stabilizes the active ACE1 structure. The primary ligand for the second chloride ion, <scene name='Angiotensin-Converting_Enzyme/Chlorine_2/2'>namely Arg 522 is located on helix 17 along with residues Tyr 520 and Tyr 523</scene>  both of which are found in the active site. <ref name="Natesh"/>
The C-Domain active site is strongly activated by chloride ion.<ref> PMID:7794265</ref> Two buried chloride ions are found in the ACE1 crystal structure. The first is about 21 angstroms from the zinc ion and is<scene name='Angiotensin-Converting_Enzyme/Chlorine_1/1'> bound to Arg 489, Arg 186, Trp 485 </scene>and is surrounded by a hydrophobic shell of four tryptophans. The second chloride ion is located <scene name='Angiotensin-Converting_Enzyme/Chlorine_2/3'>10 angstroms away from the zinc ion and is bound to Arg 522 and Tyr 224</scene>. It is believed that the first chloride ion stabilizes the active ACE1 structure. The primary ligand for the second chloride ion, <scene name='Angiotensin-Converting_Enzyme/Chlorine_2/2'>namely Arg 522 is located on helix 17 along with residues Tyr 520 and Tyr 523</scene>  both of which are found in the active site. <ref name="Natesh"/>
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</StructureSection>
 
==Medical Implications==
==Medical Implications==



Revision as of 07:32, 16 May 2012

File:1o8a2.png
Crystal Structure of Human tACE, Renin

Template:STRUCTURE 1o8a Angiotensin-Converting Enzyme (ACE) is both an exopeptidase and endopeptindase first discovered by Skeggs et al. in 1956. [1] ACE is a zinc- and chloride-dependent metallopeptidase that is responsible for the metabolism of key biologically active peptides, namely Angiotensin I and Bradykinin. These two peptides play a critical role in maintaining appropriate blood pressure in the human body along with a host of other homeostatic circulatory functions. ACE catalyzes the conversion of the decapeptide Angiostensin I to the octapeptide Angiostensin II. Due to its critical role in the Renin-Angiotensin-Aldosterone System (RAAS), ACE has been targeted by a number of pharmaceutical compounds to treat hypertension, diabetic nephropathy, and renal failure. [2]

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3D Structures of Angiotensin-Converting Enzyme

Update November 2011

1n9v – hANCE - human
1o86, 1uzf, Capoten – hANCE (mutant)
Altace – hANCE N domain
1o86 - hANCE N domain+lisinopril
Prinivil - hANCE +lisinopril
Lotensin - hANCE + captopril analog
Lisinopril, Captopril, Enalaprilat, 1uze, Ramipril – hANCE 2 fragment+spike glycoprotein
Benazepril – hANCE+LISW
Perindopril, Trandolapril – hANCE+ketone inhibitor
3d0g - hANCE+phosphinic inhibitor
2xy9, 2xyd - hANCE N domain + phosphinic inhibitor
1uze, 1uzf - hANCE+anti-hypertensive drug
2xhm – DmANCE+K26 – Drosophila melanogaster
2x8y – DmANCE
2x8z, 2x90, 2x91, 2x92, 2x93, 2x94, 2x95, 2x96, 2x97, 1j36, 1j37, 1j38 – DmANCE+anti-hypertensive drug
3zqz – DmANCE + captopril analog

Additional Resources

For Additional Information, see: Hypertension & Congestive Heart Failure

References

  1. ↑ Skeggs, L. T., Dorer, F. E., Kahn, J. R., Lentz, K. E., Levin, M. (1981) Experimental renal hypertension: the discovery of the Renin-Angiotensin system. Soffer, R. eds. Biochemical Regulation of Blood Pressure ,3-38 John Wiley & Sons, Inc. Hoboken.
  2. ↑ Hoogwerf BJ, Young JB. The HOPE study. Ramipril lowered cardiovascular risk, but vitamin E did not. Cleve Clin J Med. 2000 Apr;67(4):287-93. PMID:10780101


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David Canner, Cristina Murga, Alexander Berchansky, Michal Harel