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Mutational analysis of the autoprocessing site of subtilisin YaB-G124A
Authors:Chang Yuh-Shin  Liaw Shwu-Huey  Mei Hui-Ching  Hsu Chih-Chieh  Wu Chi-Yu  Tsai Ying-Chieh
Affiliation:Institute of Biochemistry, National Yang-Ming University, Taipei, Taiwan, Republic of China.
Abstract:The potential residue at the autoprocessing site for improving processing efficiency was evaluated from hydrolysis of 19 cleavage-site-mimicking octapeptides, VTTXQTVP (-4 to +4), by the mature subtilisin YaB and YaB-G124A mutants. Both enzymes cleaved the octapeptides mainly at two sites, X-Q (A-site) and Q-T (B-site), at varied preferences. Based on the results above, Met(-1) of YaB-G124A was mutated and, as expected, extracellular enzyme production increased with Gln or Ala replacement, but decreased with Ile or Asp substitution. Together with previous structural studies, our results suggest that autoprocessing is dependent on not only the primary structure, but also the peptide flexibility around the processing site. Cleavage at the B-site resulted in a novel YaB mutant lacking the N-terminus Gln 1, which led the mutant enzyme to less enzymatic activity by 80% and less thermal stability by 20 degrees C, perhaps due to its ligation to the high-affinity calcium ion.
Keywords:subtilisin YaB   autoprocessing   protein engineering   calcium binding
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