<div><p>In this work we investigate by computational means the behavior of two orthologous bacterial proteins, a mesophilic and a thermophilic tetrameric malate dehydrogenase (MalDH), at different temperatures. Namely, we quantify how protein mechanical rigidity at different length- and time-scales correlates to protein thermophilicity as commonly believed. In particular by using a clustering analysis strategy to explore the conformational space of the folded proteins, we show that at ambient conditions and at the molecular length-scale the thermophilic variant is indeed more rigid that the mesophilic one. This rigidification is the result of more efficient inter-domain interactions, the strength of which is further quantified via ad hoc fr...
<div><p>Malate dehydrogenase (MDH) catalyzes the conversion of oxaloacetate and malate by using the ...
For this honors thesis, the thermostability of malate dehydrogenase is analyzed to answer a gnawing ...
Protein function relies upon a fine balance between stability and flexibility. To examine this balan...
In this work we investigate by computational means the behavior of two orthologous bacterial protein...
International audienceIn this work we investigate by computational means the behavior of two ortholo...
International audienceIn this work we investigate by computational means the behavior of two ortholo...
AbstractMalate dehydrogenase (MDH) from the moderately thermophilic bacterium Chloroflexus aurantiac...
Enzymes from thermophilic and, particularly, from hyperthermophilic organisms are surprisingly stabl...
Enzymes from thermophilic and, particularly, from hyperthermophilic organisms are surprisingly stabl...
Malate dehydrogenase (MDH) catalyzes the conversion of oxaloacetate and malate by using the NAD/NADH...
Malate dehydrogenase (MDH) catalyzes the conversion of oxaloacetate and malate by using the NAD/NADH...
The elucidation of mechanisms behind the thermostability of proteins is extremely important both fro...
The elucidation of mechanisms behind the thermostability of proteins is extremely important both fro...
<div><p><i>Thermus thermophilius</i> isopropylmalate dehydrogenase catalyzes oxidative decarboxylati...
The elucidation of mechanisms behind the thermostability of proteins is extremely important both fro...
<div><p>Malate dehydrogenase (MDH) catalyzes the conversion of oxaloacetate and malate by using the ...
For this honors thesis, the thermostability of malate dehydrogenase is analyzed to answer a gnawing ...
Protein function relies upon a fine balance between stability and flexibility. To examine this balan...
In this work we investigate by computational means the behavior of two orthologous bacterial protein...
International audienceIn this work we investigate by computational means the behavior of two ortholo...
International audienceIn this work we investigate by computational means the behavior of two ortholo...
AbstractMalate dehydrogenase (MDH) from the moderately thermophilic bacterium Chloroflexus aurantiac...
Enzymes from thermophilic and, particularly, from hyperthermophilic organisms are surprisingly stabl...
Enzymes from thermophilic and, particularly, from hyperthermophilic organisms are surprisingly stabl...
Malate dehydrogenase (MDH) catalyzes the conversion of oxaloacetate and malate by using the NAD/NADH...
Malate dehydrogenase (MDH) catalyzes the conversion of oxaloacetate and malate by using the NAD/NADH...
The elucidation of mechanisms behind the thermostability of proteins is extremely important both fro...
The elucidation of mechanisms behind the thermostability of proteins is extremely important both fro...
<div><p><i>Thermus thermophilius</i> isopropylmalate dehydrogenase catalyzes oxidative decarboxylati...
The elucidation of mechanisms behind the thermostability of proteins is extremely important both fro...
<div><p>Malate dehydrogenase (MDH) catalyzes the conversion of oxaloacetate and malate by using the ...
For this honors thesis, the thermostability of malate dehydrogenase is analyzed to answer a gnawing ...
Protein function relies upon a fine balance between stability and flexibility. To examine this balan...