User:Jennifer Taylor/Sandbox 4
From Proteopedia
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==4Q7Q's Structure== | ==4Q7Q's Structure== | ||
| - | 4Q7Q is composed of two chains; one chain can be seen <scene name='78/787192/4q7q_chain_a/ | + | 4Q7Q is composed of two chains; one chain can be seen <scene name='78/787192/4q7q_chain_a/9'>here</scene>. The colors indicate the translation direction of the peptide sequence from the N to C terminus; red represents the N-terminus while dark blue represents the C-terminus. Based on this structural model, we can see that 4Q7Q is an alpha-beta superfold; there are beta sheets (represented by the straighter strands) sandwiched between the alpha helices (represented by the coiled strands). |
== ''In silico'' Analysis == | == ''In silico'' Analysis == | ||
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We initially analyzed 4Q7Q through the protein structure databases BLAST, Pfam, and Dali. Our top hit was 4M8K, a GDSL-like lipase. Through BLAST, we found that 4M8K and 4Q7Q had a 36% sequence identity, with an E value of 0.002, indicating that it is a significant match. Since we can use the principle of homology to predict the function of an unknown protein, we first hypothesized that 4Q7Q was too a lipase. | We initially analyzed 4Q7Q through the protein structure databases BLAST, Pfam, and Dali. Our top hit was 4M8K, a GDSL-like lipase. Through BLAST, we found that 4M8K and 4Q7Q had a 36% sequence identity, with an E value of 0.002, indicating that it is a significant match. Since we can use the principle of homology to predict the function of an unknown protein, we first hypothesized that 4Q7Q was too a lipase. | ||
| - | Through analyzing the sequence of 4Q7Q in SnapGene and then analyzing the 3D structure in PyMOL, we hypothesized that a possible catalytic triad of 4Q7Q was Ser164, Asp193, and His196. We believe that this group of amino acids may be involved in active site of 4Q7Q and therefore affects how the protein works. As seen in this <scene name='78/787192/4q7q_active_site/ | + | Through analyzing the sequence of 4Q7Q in SnapGene and then analyzing the 3D structure in PyMOL, we hypothesized that a possible catalytic triad of 4Q7Q was Ser164, Asp193, and His196. We believe that this group of amino acids may be involved in active site of 4Q7Q and therefore affects how the protein works. As seen in this <scene name='78/787192/4q7q_active_site/4'>image</scene>, all three amino acids are close in proximity to one another and are brought together in a single orientation. |
We also performed further analysis in PyMOL and ProMOL which involved the homology of active sites as well as the homology of 3D structures. Top hits included 3LIP, a lipase found in ''Burkholderia cepacia'', 1TAH, a lipase found in ''Burkholderia glumae'', and 1BWR, a hydrolase found in ''Bos taurus''. We aligned both the structure and putative catalytic triad of 4Q7Q with each of these known proteins. | We also performed further analysis in PyMOL and ProMOL which involved the homology of active sites as well as the homology of 3D structures. Top hits included 3LIP, a lipase found in ''Burkholderia cepacia'', 1TAH, a lipase found in ''Burkholderia glumae'', and 1BWR, a hydrolase found in ''Bos taurus''. We aligned both the structure and putative catalytic triad of 4Q7Q with each of these known proteins. | ||
Revision as of 18:51, 22 May 2018
4Q7Q
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