User:Jennifer Taylor/Sandbox 4

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==Site-Directed Mutagenesis==
==Site-Directed Mutagenesis==
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[[Image:4Q7Q_triads.png|thumb|left|250px|Figure 10: a) Putative catalytic triad of 4Q7Q: Ser164, Asp193, His196. b) S164A, D193A, H196A mutagenesis.]]
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[[Image:4Q7Q_triads.png|thumb|right|250px|Figure 10: a) Putative catalytic triad of 4Q7Q: Ser164, Asp193, His196. b) S164A, D193A, H196A mutagenesis.]]
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[[Image:4Q7Q_PCR_mutations.png|thumb|left|250px|Figure 11: a) D193A mutation. b) H196A mutation. c) S164A mutation. d) D193A and H196A mutations.]]
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[[Image:4Q7Q_PCR_mutations.png|thumb|right|250px|Figure 11: a) D193A mutation. b) H196A mutation. c) S164A mutation. d) D193A and H196A mutations.]]
To test our hypothesized catalytic triad, we performed site-directed mutagenesis using PCR on 4Q7Q with specialized primers. After mutating the suspected catalytic triad, transforming the mutated plasmid DNA, and purifying the plasmid, we sent our DNA out for sequencing to confirm that our mutagenesis was successful. After another round of protein expression and purification, we then planned to perform a pNPB assay. Through mutating the catalytic triad, we expect that the protein will no longer be able to perform as a lipase; it will not cleave pNPB to form butyric acid and nitrophenol.
To test our hypothesized catalytic triad, we performed site-directed mutagenesis using PCR on 4Q7Q with specialized primers. After mutating the suspected catalytic triad, transforming the mutated plasmid DNA, and purifying the plasmid, we sent our DNA out for sequencing to confirm that our mutagenesis was successful. After another round of protein expression and purification, we then planned to perform a pNPB assay. Through mutating the catalytic triad, we expect that the protein will no longer be able to perform as a lipase; it will not cleave pNPB to form butyric acid and nitrophenol.
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Figure 13 shows our transformation results in DH5α with four of our different PCR products. Our four primers included the D193A mutation, the H196A mutation, and the S164A mutation. Since two of our primers overlapped, we also had a single primer that took care of the two mutations, D193A and H196A, simultaneously. Each plate has colonies; low transformation efficiency was expected because our cloned PCR products were lower in concentration.
Figure 13 shows our transformation results in DH5α with four of our different PCR products. Our four primers included the D193A mutation, the H196A mutation, and the S164A mutation. Since two of our primers overlapped, we also had a single primer that took care of the two mutations, D193A and H196A, simultaneously. Each plate has colonies; low transformation efficiency was expected because our cloned PCR products were lower in concentration.
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Revision as of 18:26, 23 May 2018

4Q7Q

Structure of 4Q7Q

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References

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Jennifer Taylor

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