2020
DOI: 10.1002/2211-5463.13041
|View full text |Cite
|
Sign up to set email alerts
|

The high catalytic rate of the cold‐active Vibrio alkaline phosphatase requires a hydrogen bonding network involving a large interface loop

Abstract: This study highlights the importance of a hydrogen bonding network between the subunits in a homodimeric enzyme involving a large loop for maintaining a high catalytic rate. Although increased local flexibility in the opposite subunit increased when the network was broken by producing a loop variant, the catalytic rate was halved, contrary to expectations.

Help me understand this report

Search citation statements

Order By: Relevance

Paper Sections

Select...
4
1

Citation Types

0
6
0

Year Published

2022
2022
2022
2022

Publication Types

Select...
3
1

Relationship

2
2

Authors

Journals

citations
Cited by 4 publications
(6 citation statements)
references
References 67 publications
(78 reference statements)
0
6
0
Order By: Relevance
“…Structural modeling of the Cys is quite distant from the ligand, yet it exhibits remarkable activity (Razali et al, 2020). Further, it was also known that the loop structure is highly flexible and mobile and the dynamic loop structure facilitates the catalytic activity of PAP (Hjörleifsson et al, 2021;Razali et al, 2020). Alternatively, a water molecule might mediate the interaction between the guanidinium group of Arg158 to PO4.…”
Section: Molecular Docking Of Papmentioning
confidence: 99%
See 1 more Smart Citation
“…Structural modeling of the Cys is quite distant from the ligand, yet it exhibits remarkable activity (Razali et al, 2020). Further, it was also known that the loop structure is highly flexible and mobile and the dynamic loop structure facilitates the catalytic activity of PAP (Hjörleifsson et al, 2021;Razali et al, 2020). Alternatively, a water molecule might mediate the interaction between the guanidinium group of Arg158 to PO4.…”
Section: Molecular Docking Of Papmentioning
confidence: 99%
“…Interestingly, the crown domain was not conserved across the bacterial APs. The most distinctive crown domain structure across reported APs was Vibrio-AP (PDB ID: 3E2D), essential for the protein's stability and function (Helland et al, 2009;Hjörleifsson et al, 2021;Ásgeirsson et al, 2020).…”
Section: Introductionmentioning
confidence: 99%
“…One of the inserts forms a large interface loop that extends from each monomer to embrace the other subunit in the dimer close to the active site. This close association has an undefined role in promoting the high catalytic efficiency of this homodimeric enzyme . Two additional inserts are part of the so-called crown-domain, while the fourth insert forms a peripheral three-turn helix with an unknown function …”
Section: Introductionmentioning
confidence: 99%
“…This close association has an undefined role in promoting the high catalytic efficiency of this homodimeric enzyme 15 . Two additional inserts are part of the so-called crown-domain, while the fourth insert forms a peripheral three-turn helix with an unknown function 16 .…”
Section: Introductionmentioning
confidence: 99%
“…One of the inserts forms a large interface loop that extends from each monomer to embrace the other subunit in the dimer close to the active site. This close association has an undefined role in promoting the high catalytic efficiency of this homodimeric enzyme 15 . Two additional inserts are part of the so-called crown-domain, while the fourth insert forms a peripheral three-turn helix with an unknown function 16 .…”
Section: Introductionmentioning
confidence: 99%