2022
DOI: 10.1021/acs.jcim.2c00441
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Structural and Dynamic Effects of PTEN C-Terminal Tail Phosphorylation

Abstract: The phosphatase and tensin homologue deleted on chromosome 10 (PTEN) tumor suppressor gene encodes a tightly regulated dual-specificity phosphatase that serves as the master regulator of PI3K/AKT/mTOR signaling. The carboxy-terminal tail (CTT) is key to regulation and harbors multiple phosphorylation sites (Ser/Thr residues 380–385). CTT phosphorylation suppresses the phosphatase activity by inducing a stable, closed conformation. However, little is known about the mechanisms of phosphorylation-induced CTT-dea… Show more

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Cited by 7 publications
(12 citation statements)
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“…Interestingly, the catalytic triads for the P-M134R and P-R173C RINs both show a marked increase in connectivity and diminished expansion compared to their respective unphosphorylated CTT systems, suggesting CTT phosphorylation mediates rapid signal propagation to a small network of core residues. The distinct differences in connectivity distribution demonstrate that CTT phosphorylation plays a vital role in conformational dynamics and elicits strong network connectivity with active site residues, suggesting a role in phosphorylation-induced allosteric communication as seen in our previous studies. ,, The presence of clinically relevant mutations (Y68H, G132D, M134R, R173C) modulates how the effects of phospho-regulation on the catalytic site, potentially resulting in differences in catalytic activity and regulation.…”
Section: Resultsmentioning
confidence: 99%
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“…Interestingly, the catalytic triads for the P-M134R and P-R173C RINs both show a marked increase in connectivity and diminished expansion compared to their respective unphosphorylated CTT systems, suggesting CTT phosphorylation mediates rapid signal propagation to a small network of core residues. The distinct differences in connectivity distribution demonstrate that CTT phosphorylation plays a vital role in conformational dynamics and elicits strong network connectivity with active site residues, suggesting a role in phosphorylation-induced allosteric communication as seen in our previous studies. ,, The presence of clinically relevant mutations (Y68H, G132D, M134R, R173C) modulates how the effects of phospho-regulation on the catalytic site, potentially resulting in differences in catalytic activity and regulation.…”
Section: Resultsmentioning
confidence: 99%
“…Moreover, the study highlights perturbations among global metapaths and community network connections within the active site and inter-domain regions, indicating the significance of these regions in transmitting information across PSN (Figures and , S5). These results are also consistent with regions identified in our previously published work. ,, Notably, our results lend insight into diminutive structural changes which may provide an understanding toward PHTS-associated pathological conformations (“conformational phenotypes”) , and preponderance of disease . While the use of conventional MD simulations is critical to assess the effects of CTT phosphorylation conformational dynamics in PHTS-associated mutations, a possible limitation is that the initial conformations from each of the MD simulations might bias the conformational space.…”
Section: Discussionmentioning
confidence: 99%
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“…PRS has been applied to the investigation of the allosteric communication in a wide variety of systems. Here we quote a selection of those studies [34] , [35] , [36] , [92] , [93] , [94] , [95] , [96] , [97] , [98] , [99] , [100] , [101] , [102] , [103] , [104] , [105] , [106] , [107] , [108] , [109] , [110] , [111] .…”
Section: New Implementations In Wordommentioning
confidence: 99%