Tutorial:Basic Chemistry Topics

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==Secondary Structures==
==Secondary Structures==
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This molecule represents the <scene name='Aminoglycoside_2'-N-acetyltransferase_from_TB/Alpha_and_beta_sheets/1'>alpha helices and beta strands</scene>. The alpha helices are represented with pink arrows and the beta strands are represented with yellow arrows. This molecule has approximately four alpha helices and two beta strands. The structure of the alpha and beta sheets in tuberculosis/CoA/ and Tobramycin structure represents the GNAT fold. The GNAT fold is almost completely catalyzed by CoA- dependent transfer of an acyl group to an exposed amino acid group. This interaction is the basis for the study. This shows how the acetylation of Mycothiol is occurring and why.
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Secondary structures are alpha helices and beta sheets. They help contribute to the stability of the molecule. The alpha helices are represented with pink arrows and the beta strands are represented with yellow arrows. This molecule has approximately four alpha helices and two beta strands. Alpha helices rotate in a clockwise manner and are also oriented in a parallel formation. The parallel alpha helices are held together by hydrogen bond, which we discussed earlier. Beta sheets are often anti-parallel. The structure of the alpha and beta sheets in Tuberculosis/CoA/Tobramycin structure represents the GNAT fold. The folding of a protein is what gives the function. When you have a change in the folding you have a change in the function. The GNAT fold described in the study has a function of acetylation. Acetylation is the addition of an acyl group. The chemical formula of an acetyl group is COCH3. It is important to note that the discovery of the GNAT fold lead to the understanding of the major function.
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==Ligand==
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The ligands displayed in the molecule to the right are <scene name='Aminoglycoside_2'-N-acetyltransferase_from_TB/Tobramycin_and_coa/1'>Coenzyme A, Trobramycin</scene> and 3'-Phosphate-Adenosine-5'-Diphosphate. Coenzyme (CoA) is a coenzyme that synthesizes and oxidizes fatty acids. PAP's IUPAC name is [(2R,3S,4R,5R)-5-(6-aminopurin-9-yl)-4-hydroxy-3-phosphonooxyoxolan-2-yl]methylphosphono hydrogen phosphate. The ligands are held together by the hydrogen bonds created by alpha and beta sheets. The Protein in this molecule is represented as a dimer. A dimer is a chemical structure formed from two subunits. The dimer is constructed by connecting two subunits along their axis so that all four modules contribute to the structure.
==Active Site==
==Active Site==
The active site of a molecule can be described as a pocket where interaction between structures causes a desired effect. This is a good representation of the active site. The active site is where the substrate, in this case tobramycin, binds to CoA and the mycobacterium to cause an antibacterial effect. It the study described this is where the acetylation of the mycothiol should be occurring.
The active site of a molecule can be described as a pocket where interaction between structures causes a desired effect. This is a good representation of the active site. The active site is where the substrate, in this case tobramycin, binds to CoA and the mycobacterium to cause an antibacterial effect. It the study described this is where the acetylation of the mycothiol should be occurring.
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==Ligand==
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The ligands displayed in the molecule to the right are <scene name='Aminoglycoside_2'-N-acetyltransferase_from_TB/Tobramycin_and_coa/1'>Coenzyme A, Trobramycin</scene> and 3'-Phosphate-Adenosine-5'-Diphosphate. Coenzyme (CoA) is a coenzyme that synthesizes and oxidizes fatty acids. PAP's IUPAC name is [(2R,3S,4R,5R)-5-(6-aminopurin-9-yl)-4-hydroxy-3-phosphonooxyoxolan-2-yl]methylphosphono hydrogen phosphate. The ligands are held together by the hydrogen bonds created by alpha and beta sheets. The Protein in this molecule is represented as a dimer. A dimer is a chemical structure formed from two subunits. The dimer is constructed by connecting two subunits along their axis so that all four modules contribute to the structure.
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Revision as of 19:26, 28 October 2012

Structure of HMG-CoA reductase (PDB entry 1dq8)

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Alyssa Graham

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