| Literature DB >> 25689423 |
Akinori Kashimura1, Masahiro Kimura2, Kazuaki Okawa3, Hirotaka Suzuki4, Atsushi Ukita5, Satoshi Wakita6, Kana Okazaki7, Misa Ohno8, Peter O Bauer9, Masayoshi Sakaguchi10, Yasusato Sugahara11, Fumitaka Oyama12.
Abstract
Mouse acidic mammalian chitinase (AMCase) plays important physiological roles in defense and nutrition. AMCase is composed of an N-terminal catalytic domain (CatD) and a C-terminal chitin-binding domain (CBD). We expressed CatD of mouse AMCase as a recombinant fusion protein with Protein A and V5-His in Escherichia coli (Protein A-CatD-V5-His), evaluated its functional properties and compared them to the full-length AMCase (Protein A-AMCase-V5-His). Under our experimental conditions, the chitinolytic activity of both proteins against 4-nitrophenyl N,N'-diacetyl-β-D-chitobioside was equivalent with regard to their specific enzymatic activities, optimal pH and temperature as well as to the pH and temperature stability. CatD bound to chitin beads and cleaved the N-acetylglucosamine hexamer, colloidal and crystalline chitin as well as the shrimp shell, and released primarily N,N'-diacetylchitobiose fragments at pH 2.0. These results indicate that the primary structure of CatD is sufficient to form a proper tertiary structure required for chitinolytic activity, recognize chitin substrates and degrade them in the absence of a CBD. Our recombinant proteins can be used for further studies evaluating pathophysiological roles of AMCase in different diseases.Entities:
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Year: 2015 PMID: 25689423 PMCID: PMC4346942 DOI: 10.3390/ijms16024028
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Figure 1Schematic representations of the Escherichia coli-expressed fusion proteins. Mouse AMCase contains an N-terminal catalytic domain (CatD) and a C-terminal chitin-binding domain (CBD). (A) Pre-Protein A-AMCase-V5-His; (B) Pre-Protein A-CatD-V5-His; and (C) Pre-Protein A-V5-His. The newly synthesized recombinant proteins contain the Protein A signal sequence, which is processed during secretion.
Figure 2Analysis of the E. coli-expressed fusion proteins. (A) 12.5% SDS-PAGE analysis of the recombinant proteins from the periplasmic fractions (Peri 1) of E. coli. The fusion proteins were purified by IgG Sepharose followed by Ni Sepharose chromatography, electrophoresed (1 μg of protein) and visualized in the gel by Coomassie Brilliant Blue R-250 (CBB); (B) Western blot analysis of the recombinant proteins. 0.1 μg protein separated by SDS-PAGE was transferred to a PVDF membrane. Immunoblot was performed with anti-V5-HRP antibody. PA-AMCase, Protein A-AMCase-V5-His; PA-CatD, Protein A-CatD-V5-His; (C) Comparison of the chitinolytic properties of the CatD with the full-length AMCase in 50 μL reactions using 0.1 M Gly-HCl buffer (pH 2.0) or McIlvaine’s buffer (pH 7.0) at 37 °C for 30 min as described in the Experimental Section.
Figure 3Characterization of the chitinolytic activity of E. coli-expressed Protein A-CatD-V5-His. (A) pH profile; (B) temperature profile; (C) pH stability profile and (D) thermostability profile of the chitinase activity for recombinant CatD were measured as described in Experimental Section. The results are presented as percentage of the maximum activity obtained in each series of experiments. Error bars represent the mean ± standard deviation from a single experiment conducted in triplicate.
Figure 4Affinity of Protein A-CatD-V5-His to chitin beads. Protein A-AMCase-V5-His, Protein A-CatD-V5-His and Protein A-V5-His were mixed and loaded onto chitin bead columns. Chitin binding assays were performed at pH 2.0 (A) or pH 7.6 (B) as described in the Experimental Section. The bound and unbound fractions were analyzed by Western blot using anti-V5-HRP antibody.
Figure 5Degradation products of GlcNAc hexamer, colloidal and crystalline chitin and shrimp shell by CatD. GlcNAc hexamer (A); colloidal (B) and crystalline (C) chitin and shrimp shell (D) were used as a substrate to determine the chitinase activity of E. coli-expressed proteins in 0.1 M Gly-HCl (pH 2.0). Reactions were conducted for 10 min, 1 or 16 h at 37 °C. Shrimp shell (D) was digested for 16 h. The chitin fragments generated by the recombinant proteins were analyzed by fluorophore-assisted carbohydrate electrophoresis [9,26]. Chitin oligomers are shown in the left margin as standards. Fluorophore-assisted carbohydrate electrophoresis analysis revealed that Protein A-CatD-V5-His releases primarily N,N'-diacetylchitobiose fragments from chitin.