Structure of a new alkaline serine protease (M-protease) from Bacillus sp. KSM-K16

T Yamane1, T Kani, T Hatanaka

  • 1Department of Biotechnology, School of Engineering, Nagoya University, Japan.

Insights

Researchers crystallized alkaline serine protease M-protease from Bacillus sp. KSM-K16, determining its structure via molecular replacement. The structure is similar to subtilisin Carlsberg but differs due to specific amino acid deletions, impacting isomorphism.

Area of Science:

  • Biochemistry
  • Structural Biology
  • Crystallography

Background:

  • Alkaline serine proteases are industrially relevant enzymes.
  • Bacillus sp. KSM-K16 produces M-protease, an alkaline serine protease.
  • Understanding enzyme structure is crucial for applications.

Purpose of the Study:

  • To crystallize and determine the three-dimensional structure of M-protease.
  • To compare the structure of M-protease with homologous subtilisins.
  • To identify structural differences that may affect crystal isomorphism.

Main Methods:

  • Crystallization of M-protease from Bacillus sp. KSM-K16.
  • X-ray diffraction data collection and processing.
  • Molecular replacement using subtilisin Carlsberg (SBC) atomic model.
  • Structure refinement and analysis.

Main Results:

  • Two crystal forms of M-protease were obtained.
  • The crystal structure of M-protease was solved and refined.
  • M-protease shares structural similarity with SBC (60% homology).
  • Root-mean-square deviation of 1.06 A for C(alpha) positions between M-protease and SBC.
  • Amino acid deletions at residues 36' and 160'-163' were identified in M-protease compared to SBC.
  • The four-residue deletion (160'-163') likely explains the lack of isomorphism.

Conclusions:

  • The crystal structure of M-protease has been elucidated.
  • M-protease exhibits structural similarity to other subtilisins.
  • Specific amino acid deletions are responsible for the non-isomorphism between M-protease and SBC crystal structures.

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