Abstract

The gene of subtilisin S41, an alkaline protease secreted by the psychrophile Bacillus TA41, encodes for a preproenzyme of 419 amino acids residues. The nucleotide sequence and NH2- and COOH-terminal amino acid sequencing of the purified enzyme indicate that the mature subtilisin S41 is composed of 309 residues with a predicted M(r) = 31,224. Subtilisin S41 shares most of its properties with mesophilic subtilisins (structure of the precursor, 52% amino acid sequence identity, alkaline pH optimum, broad specificity, Ca2+ binding) but is characterized by a higher specific activity on macromolecular substrate, by a shift of the optimum of activity toward low temperatures, and by a low thermal stability. The enzyme also differs by an acidic pI (5.3) and the presence of one disulfide bond. It is proposed that the psychrophilic enzyme possesses a more flexible molecular structure when compared to mesophilic and thermophilic subtilases in order to compensate for the reduction of reaction rates at low temperatures. The model of subtilisin S41 indeed reveals several features able to induce a more flexible, heat-labile conformation: the occurrence of four extended surface loops, a very hydrophilic surface through 11 extra Asp residues, and the lack of several salt bridges and aromatic-aromatic interactions. The low affinity of the Ca1 calcium binding site (Kd(app) = 10(-6) M), resulting possibly from one chelating side chain substitution and the stacking of Gly residues, also reflect a less compact conformation. The difference of free energy of stabilization between subtilisin S41 and a mesophilic subtilisin suggests that the balance of exo- and endothermically formed weak bonds is critical for the enzyme flexibility.

Highlights

  • The gene of subtilisin 541, an alkaline protease se- the most widely studied in aneffort to identify the structural creted by the psychrophile Bacillus TA41,encodes for a features allowing their proteins to retaianfolded conformation preproenzyme of 419 amino acids residues

  • The nucle- a t elevated temperatures. These enzymes are characterizbeyd otide sequenceand 5-and COOH-terminal amino acidthe strengthening of one or a combination of noncovalent insequencingof the purified enzyme indicate that thema- teractions such as salt bridges, hydrophobic and weakly polar ture subtilisin 541 is composed of 309 residues with a interactions, hydrogen bonding, charge-dipole interactions in predicted M, = 31,224

  • Precursor, 52% amino acid sequence identity, alkaline At the other end of the biological temperature scale, psypH optimum,broad specificity, Ca" binding)but is char- chrophiles have to cope with the reduction of the enzymatic acterized by a higher specific activity on macromolecu- reaction rates at oftensub-zero temperatures

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Summary

Cold Adaptationof Proteins

PURIFICATION, CHARACTERIZATION,AND SEQUENCE OF THE HEAT-LABILE SUBTILISIN FROM THE ANTARCTIC PSYCHROPHILE BACILLUS TA41*. The gene of subtilisin 541, an alkaline protease se- the most widely studied in aneffort to identify the structural creted by the psychrophile Bacillus TA41,encodes for a features allowing their proteins to retaianfolded conformation preproenzyme of 419 amino acids residues. Environmental factors akreey determinants in thperocess of adaptation and evolution of living organisms In this respect, analysis of thestructure-stabilityrelationships in proteins from extremophiles provides valuable insights on the molecular strategies adopted in response to environmental stress as extremes of pH, pressure, ionic strength, or temperature (Betzel et al.,19921, thermitase (Gros et al, 1989), and proteinase K (Betzel et al, 1988) have been reported.Thelarge amount of data availablefor subtilisins, as illustrated by over.

RESULTS
Savinase DY Thernitase
Ionic interactions Aromatic interactions
Interacting residues
Findings
Calcium contributes to the thermal stabilitoyf subtilisins by
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