User:Jennifer Taylor/Sandbox 4

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[[Image:alignments.png|thumb|right|300px|Figure 2: a) Alignment of <span style="color:chartreuse;">4Q7Q's putative catalytic triad</span> and 3LIP's catalytic triad (shown in blue). b) Alignment of 4Q7Q's putative catalytic triad (shown in green) and 1TAH's catalytic triad (shown in pink). c) Alignment of 4Q7Q's putative catalytic triad (shown in green) and 1BWR's catalytic triad (shown in pink).]]
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[[Image:alignments.png|thumb|right|300px|Figure 2: a) Alignment of 4Q7Q's putative catalytic triad (green) and 3LIP's catalytic triad (blue). b) Alignment of 4Q7Q's putative catalytic triad (green) and 1TAH's catalytic triad (pink). c) Alignment of 4Q7Q's putative catalytic triad (green) and 1BWR's catalytic triad (salmon).]]
We initially analyzed 4Q7Q through the protein structure databases BLAST, Pfam, and Dali. The top hit was 4M8K, a GDSL-like lipase, a type of a lipase that has a flexible active site and therefore broad substrate specificity. 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. The top hit was 4M8K, a GDSL-like lipase, a type of a lipase that has a flexible active site and therefore broad substrate specificity. 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.
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We also performed further analysis in PyMOL and ProMOL which involved the homology of active sites. Top hits included 3LIP, a lipase found in ''Burkholderia cepacia'' (a human pathogen that can cause pneumonia), 1TAH, a lipase found in ''Burkholderia glumae'' (a soil bacterium), and 1BWR, a hydrolase found in ''Bos taurus'' (cattle). We aligned the putative catalytic triad of 4Q7Q with each of the catalytic triads of these known proteins.
We also performed further analysis in PyMOL and ProMOL which involved the homology of active sites. Top hits included 3LIP, a lipase found in ''Burkholderia cepacia'' (a human pathogen that can cause pneumonia), 1TAH, a lipase found in ''Burkholderia glumae'' (a soil bacterium), and 1BWR, a hydrolase found in ''Bos taurus'' (cattle). We aligned the putative catalytic triad of 4Q7Q with each of the catalytic triads of these known proteins.
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3LIP has two chains. As seen in Figure 2, when aligning the catalytic triad of 3LIP (Asp264, Ser87, His286) to the putative catalytic triad of 4Q7Q, the RMS is 2.257.
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<span style= "color:cyan;">3LIP</span> has two chains. As seen in Figure 2, when aligning the catalytic triad of 3LIP (Asp264, Ser87, His286) to the putative catalytic triad of 4Q7Q, the RMS is 2.257.
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1TAH has four chains. As seen in Figure 3, when aligning the catalytic triad of 1TAH (Asp263, Ser87, His285) to the putative catalytic triad of 4Q7Q, the RMS is 2.205.
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<span style= "color:magenta;">1TAH</span> has four chains. As seen in Figure 3, when aligning the catalytic triad of 1TAH (Asp263, Ser87, His285) to the putative catalytic triad of 4Q7Q, the RMS is 2.205.
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1BWR has one chain. As seen in Figure 4, when aligning the catalytic triad of 1BWR (Asp192, Ser47, His195) to the putative catalytic triad of 4Q7Q, the RMS is 2.049.
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<span style= "color:pink bow;">1BWR</span> has one chain. As seen in Figure 4, when aligning the catalytic triad of 1BWR (Asp192, Ser47, His195) to the putative catalytic triad of 4Q7Q, the RMS is 2.049.
Compiling all of the data together, we can see that 1BWR's catalytic triad is most structurally similar to the putative catalytic triad of 4Q7Q due to the lower RMS value measured. Therefore, we hypothesized that 4Q7Q is most likely a hydrolase; through experiments, we can investigate further if 4Q7Q is specifically a lipase.
Compiling all of the data together, we can see that 1BWR's catalytic triad is most structurally similar to the putative catalytic triad of 4Q7Q due to the lower RMS value measured. Therefore, we hypothesized that 4Q7Q is most likely a hydrolase; through experiments, we can investigate further if 4Q7Q is specifically a lipase.

Revision as of 18:10, 23 May 2018

4Q7Q

Structure of 4Q7Q

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References

Proteopedia Page Contributors and Editors (what is this?)

Jennifer Taylor

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