International audienceComparing homologous enzymes adapted to different thermal environments aids to shed light on their delicate stability/function trade-off. Protein mechanical rigidity was postulated to secure stability and high-temperature functionality of thermophilic proteins. In this work, we challenge the corresponding-state principle for a pair of homologous GTPase domains by performing extensive molecular dynamics simulations, applying conformational and kinetic clustering, as well as exploiting an enhanced sampling technique (REST2). While it was formerly shown that enhanced protein flexibility and high temperature stability can coexist in the apo hyperthermophilic variant, here we focus on the holo states of both homologues by m...
<div><p>Understanding how proteins adapt to function at high temperatures is important for decipheri...
Enzymes from thermophiles are poorly active at temperatures at which their mesophilic homologs exhib...
Organisms that thrive under extreme conditions, such as high salt concentration, low pH, or high tem...
International audienceComparing homologous enzymes adapted to different thermal environments aids to...
Proteins from thermophilic organisms are stable and functional well above ambient temperature. Under...
Molecular dynamics simulations were employed to study how protein solution structure and dynamics ar...
International audienceProteins from thermophilic and hyperthermophilic organisms are stable and func...
In the present studies, we analyzed the influence of temperature on the stability and dynamics of th...
Herein we examine the origin of the high-temperature(350 K) behavior of a thermophilic mutant enzym...
Inspired by Somero’s corresponding state principle that relates protein enhanced thermal stability w...
Protein function relies upon a fine balance between stability and flexibility. To examine this balan...
Understanding how proteins adapt to function at high temperatures is important for deci-phering the ...
AbstractWe attempt to understand the origin of enhanced stability in thermophilic proteins by analyz...
Two mesophilic/thermophilic variants of the G-domain of the elongation factor Tu were studied via mo...
AbstractTwo mesophilic/thermophilic variants of the G-domain of the elongation factor Tu were studie...
<div><p>Understanding how proteins adapt to function at high temperatures is important for decipheri...
Enzymes from thermophiles are poorly active at temperatures at which their mesophilic homologs exhib...
Organisms that thrive under extreme conditions, such as high salt concentration, low pH, or high tem...
International audienceComparing homologous enzymes adapted to different thermal environments aids to...
Proteins from thermophilic organisms are stable and functional well above ambient temperature. Under...
Molecular dynamics simulations were employed to study how protein solution structure and dynamics ar...
International audienceProteins from thermophilic and hyperthermophilic organisms are stable and func...
In the present studies, we analyzed the influence of temperature on the stability and dynamics of th...
Herein we examine the origin of the high-temperature(350 K) behavior of a thermophilic mutant enzym...
Inspired by Somero’s corresponding state principle that relates protein enhanced thermal stability w...
Protein function relies upon a fine balance between stability and flexibility. To examine this balan...
Understanding how proteins adapt to function at high temperatures is important for deci-phering the ...
AbstractWe attempt to understand the origin of enhanced stability in thermophilic proteins by analyz...
Two mesophilic/thermophilic variants of the G-domain of the elongation factor Tu were studied via mo...
AbstractTwo mesophilic/thermophilic variants of the G-domain of the elongation factor Tu were studie...
<div><p>Understanding how proteins adapt to function at high temperatures is important for decipheri...
Enzymes from thermophiles are poorly active at temperatures at which their mesophilic homologs exhib...
Organisms that thrive under extreme conditions, such as high salt concentration, low pH, or high tem...