Proteins from thermophiles are generally more thermostable than their mesophilic homologs, but little is known about the evolutionary process driving these differences. Here we attempt to understand how the diverse thermostabilities of bacterial ribonuclease H1 (RNH) proteins evolved. RNH proteins from Thermus thermophilus (ttRNH) and Escherichia coli (ecRNH) share similar structures but differ in melting temperature (T(m)) by 20 °C. ttRNH's greater stability is caused in part by the presence of residual structure in the unfolded state, which results in a low heat capacity of unfolding (ΔCp) relative to ecRNH. We first characterized RNH proteins from a variety of extant bacteria and found that Tm correlates with the species' growth temperat...
Although general mechanisms of RNA folding and catalysis have been elucidated, little is known about...
It has long been known that amino acid substitutions in proteins of organisms living at moderate and...
AbstractWe attempt to understand the origin of enhanced stability in thermophilic proteins by analyz...
Proteins from thermophiles are generally more thermostable than their mesophilic homologs, but littl...
Proper folding of proteins is critical to producing the biological machinery essential for cellular ...
Abstract Background The unfolding speed of some hyperthermophilic proteins is dramatically lower tha...
The process of molecular evolution has produced the diversity of proteins observed across life. The ...
The relationship between inherent internal conformational processes and enzymatic activity or thermo...
Proteins from thermophiles possess high thermostability. The stabilization mechanisms differ between...
Thermodynamic stability is a central requirement for protein function, and one goal of protein engin...
Here we investigate how thermodynamic properties of orthologous proteins are influenced by the genom...
Although general mechanisms of RNA folding and catalysis have been elucidated, little is known about...
The histone-like DNA-binding proteins (HU) serve as model molecules for protein thermostability stud...
This chapter outlines the evolutionary protein design methods that are used to help uncover the mole...
Structural changes are critical to the ability of proteins, particularly enzymes, to carry out their...
Although general mechanisms of RNA folding and catalysis have been elucidated, little is known about...
It has long been known that amino acid substitutions in proteins of organisms living at moderate and...
AbstractWe attempt to understand the origin of enhanced stability in thermophilic proteins by analyz...
Proteins from thermophiles are generally more thermostable than their mesophilic homologs, but littl...
Proper folding of proteins is critical to producing the biological machinery essential for cellular ...
Abstract Background The unfolding speed of some hyperthermophilic proteins is dramatically lower tha...
The process of molecular evolution has produced the diversity of proteins observed across life. The ...
The relationship between inherent internal conformational processes and enzymatic activity or thermo...
Proteins from thermophiles possess high thermostability. The stabilization mechanisms differ between...
Thermodynamic stability is a central requirement for protein function, and one goal of protein engin...
Here we investigate how thermodynamic properties of orthologous proteins are influenced by the genom...
Although general mechanisms of RNA folding and catalysis have been elucidated, little is known about...
The histone-like DNA-binding proteins (HU) serve as model molecules for protein thermostability stud...
This chapter outlines the evolutionary protein design methods that are used to help uncover the mole...
Structural changes are critical to the ability of proteins, particularly enzymes, to carry out their...
Although general mechanisms of RNA folding and catalysis have been elucidated, little is known about...
It has long been known that amino acid substitutions in proteins of organisms living at moderate and...
AbstractWe attempt to understand the origin of enhanced stability in thermophilic proteins by analyz...