The table contains data about how different ASFV mutants affect enzyme activity-- for example the D29A mutant, where the D at position 29 was mutated to an A.  Select three mutants at random, and for each mutant explain how that mutation could affect intermolecular force interactions (an example: hydrogen bonding

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Author:Matthew Douglas, Jung Choi, Mary Ann Clark
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Chapter33: The Animal Body: Basic Form And Function
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The table contains data about how different ASFV mutants affect enzyme activity-- for example the D29A mutant, where the D at position 29 was mutated to an A.  Select three mutants at random, and for each mutant explain how that mutation could affect intermolecular force interactions (an example: hydrogen bonding could be disrupted by this mutation because…

Kcat/Km
(M¯1 s-1)
Enzyme
Кт (иM)
Keat (s)
aDUTWT
ADUTD29A
aDUTR71A
aDUT$72A
aDUT$73A
ADUTL89A
aDUT190A
aDUTD91A
aDUTY94A
aDUTQ120A
ADUTA147
aDUTR149A
ADUTR149K
aDUTF154Y
SDUTWT
0.98 ± 0.2
4.37 + 0.15
4.46 × 106
4.62 × 10*
6.89 ± 0.2
0.31 ± 0.1
4.89 ± 0.35
4.16 ± 0.19
0.48 + 0.2
9.85 x 10*
1.34 x 106
0.54 × 10
1.58 x 106
5.58 + 0.3
5.44 ± 0.5
2.94 ± 0.7
0.47 + 0.26
0.75 + 0.2
16.76 ± 1.21
0.58 +0.4
3.51 x 10%
4.51 + 0.7
0.15 + 0.1
26.45 ± 0.2
0.58 ± 0.13
1.5 + 0.1
5.58 ± 0.6
0.33 x 105
0.56 x 105
9.60 × 106
Transcribed Image Text:Kcat/Km (M¯1 s-1) Enzyme Кт (иM) Keat (s) aDUTWT ADUTD29A aDUTR71A aDUT$72A aDUT$73A ADUTL89A aDUT190A aDUTD91A aDUTY94A aDUTQ120A ADUTA147 aDUTR149A ADUTR149K aDUTF154Y SDUTWT 0.98 ± 0.2 4.37 + 0.15 4.46 × 106 4.62 × 10* 6.89 ± 0.2 0.31 ± 0.1 4.89 ± 0.35 4.16 ± 0.19 0.48 + 0.2 9.85 x 10* 1.34 x 106 0.54 × 10 1.58 x 106 5.58 + 0.3 5.44 ± 0.5 2.94 ± 0.7 0.47 + 0.26 0.75 + 0.2 16.76 ± 1.21 0.58 +0.4 3.51 x 10% 4.51 + 0.7 0.15 + 0.1 26.45 ± 0.2 0.58 ± 0.13 1.5 + 0.1 5.58 ± 0.6 0.33 x 105 0.56 x 105 9.60 × 106
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