SDS-PAGE를 이 용한 Prevotella intermedia와 P. nigrescens의 감별에 관한 연구

DIFFERENTIATION OF PREVOTELLA INTERMEDIA AND P. NIGRESCENS USING SDS-PAGE

  • 배광식 (서울대학교 치과대학 치과보존학교실)
  • Bae, Kwang-Shik (Dept. of Conservative Dentistry, College of Dentistry, Seoul National University)
  • 발행 : 1997.09.30

초록

In 1992, Prevotella intermedia was shown to be comprised of another spoecies now known as Prevotella nigrescens. Strain ATCC 33563 is now designated the type strain of P. nigrescens while strain ATCC 25611 is remains the type strain of P. intermedia. The purpose of this study was to find the differences in protein profiles of P. intermedia and P. nigrescens, using sodium dodecyl sulfate polyacrylamide gel electrophoresis, which can be used for differentiation of those two species. A partial amino acid sequence of the 18.6 kDa protein band, which was specific in P. nigrescens, was also determined. The cellular proteins were extracted from the cell pellets of pure cultures of P. intermedia. and P. nigrescens by either sonication or being shaken continuously for 20 min at $21^{\circ}C$ with 1 % SDS or being boiled for 3 min with 1 % SDS. SDS-PAGE was performed according to the method of laemmli using either 12% (w/v) gels or 18% (w/v) gels. Results were as follows ; 1. The similar electrophoretic protein profiles were shown by 3 cellular protein extraction methods for each strain. (Fig. 1 and 2) 2. the 18.6 kDa band which was specific only in P. nigrescens could be used for the differentiation of P. intermedia. and P. nigrescens. (Fig. 1 and 2, Table 1) 3. A total of 4 different tryptic fragments from the 18.6 kDa protein were sequenced. the resulting amino acid sequences were fragment 1.GNPVNIGGEW, 2.FNVVR, 3.NYLT-VAPY, and 4.GGDNVTTYQVLPEIGYN. By comparison to the sequences of known proteins in the Swiss-Prot database and PIR database. 90 % matching between fragment 1 and serine hydroxymethyl transferase(P24060) in the Swiss-Prot, and 90% matching between fragment 1 and glycine hydroxymethyl transferase(S15203) in the PIR were shown, but the identity and function of the 18.6 kDa protein remains unknown.

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