The sequence of a subtilisin-type protease (aerolysin) from the hyperthermophilic archaeumPyrobaculum aerophilumreveals sites important to thermostability
Open Access
- 1 August 1994
- journal article
- research article
- Published by Wiley in Protein Science
- Vol. 3 (8) , 1329-1340
- https://doi.org/10.1002/pro.5560030819
Abstract
The hyperthermophilic archaeum Pyrobaculum aerophilum grows optimally at 100 °C and pH 7.0. Cell homogenates exhibit strong proteolytic activity within a temperature range of 80–130 °C. During an analysis of cDNA and genomic sequence tags, a genomic clone was recovered showing strong sequence homology to alkaline subtilisins of Bacillus sp. The total DNA sequence of the gene encoding the protease (named “aerolysin”) was determined. Multiple sequence alignment with 15 different serine-type proteases showed greatest homology with subtilisins from gram-positive bacteria rather than archaeal or eukaryal serine proteases. Models of secondary and tertiary structure based on sequence alignments and the tertiary structures of subtilisin Carlsberg, BPN', thermitase, and protease K were generated for P. aerophilum subtilisin. This allowed identification of sites potentially contributing to the thermostability of the protein. One common transition put alanines at the beginning and end of surface alpha-helices. Aspartic acids were found at the N-terminus of several surface helices, possibly increasing stability by interacting with the helix dipole. Several of the substitutions in regions expected to form surface loops were adjacent to each other in the tertiary structure model.Keywords
This publication has 43 references indexed in Scilit:
- Prediction of Protein Secondary Structure at Better than 70% AccuracyJournal of Molecular Biology, 1993
- Studies of the Hyperthermophile Thermotoga maritima by Random Sequencing of cDNA and Genomic Libraries: Identification and Sequencing of the trpEG (D) OperonJournal of Molecular Biology, 1993
- Sequence of the subtilisin-encoding gene from an antarctic psychrotroph Bacillus TA41Gene, 1992
- Increasing the thermostability of a neutral protease by replacing positively charged amino acids in the N-terminal turn of α-helicesProtein Engineering, Design and Selection, 1992
- Basic local alignment search toolJournal of Molecular Biology, 1990
- Engineering protein thermal stability: Sequence statistics point to residue substitutions in α-helicesJournal of Molecular Biology, 1989
- Crystal structure of neutral protease from Bacillus cereus refined at 3.0A˚resolution and comparison with the homologous but more thermostable enzyme thermolysinJournal of Molecular Biology, 1988
- Complete amino acid sequence of alkaline mesentericopeptidaseFEBS Letters, 1986
- Complete primary structure of thermitase from Thermoactinomyces vulgaris and its structural features related to the subtilisin‐type proteinasesFEBS Letters, 1985
- Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4Nature, 1970