• Title/Summary/Keyword: N-terminal amino acid sequence

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Sequencing of the RSDA Gene Encoding Raw Starch-Digesting $\alpha$-Amylase of Bacillus circulans F-2: Identification of Possible Two Domains for Raw Substrate-Adsorption and Substrate-Hydrolysis

  • Kim, Cheorl-Ho
    • Journal of Microbiology and Biotechnology
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    • v.2 no.1
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    • pp.56-65
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    • 1992
  • The complete nucleotide sequence of the Bacillus circulans F-2 RSDA gene, coding for raw starch digesting a-amylase (RSDA), has been determined. The RSDA structure gene consists of an open reading frame of 2508 bp. Six bp upstream of the translational start codon of the RSDA is a typical gram-positive Shine-Dalgarno sequence and the RSDA encodes a preprotein of 836 amino acids with an Mr of 96, 727. The gene was expressed from its own regulatory region in E. coli and two putative consensus promoter sequences were identified upstream of a ribosome binding site and an ATG start codon. Confirmation of the nucleotide sequence was obtained and the signal peptide cleavage site was identified by comparing the predicted amino acid sequence with that derived by N-terminal analysis of the purified RSDA. The deduced N-terminal region of the RSDA conforms to the general pattern for the signal peptides of secreted prokaryotic proteins. The complete amino acid sequence was deduced and homology with other enzymes was compared. The results suggested that the Thr-Ser-rich hinge region and the non-catalytic domain are necessary for efficient adsorption onto raw substrates, and the catalytic domain (60 kDa) is necessary for the hydrolysis of substrates, as suggested in previous studies (8, 9).

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Studies on Higher Fungi in Korea (V) -N-Terminal Amino Acid Sequence and Some Properties of Proteolytic Enzyme from Sarcodon aspratus- (한국산 고등균류에 관한 연구(제 5보) -능이 중 단백분해효소의 특성과 N-말단 아미노산배열-)

  • Eun, Jae-Soon;Yang, Jae-Hean;Lee, Tae-Kyu;Choi, Dong-Seong
    • YAKHAK HOEJI
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    • v.33 no.6
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    • pp.339-344
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    • 1989
  • The alkaline protease produced by Sarcodon aspratus(Berk) S. Ito. was purified from its fruit bodies. The enzyme was purified by using ammonium sulfate fractionation, tris-acryl CM-cellulose column chromtography and chromatofocusing. The protease migrated as one major band with a molecular weight of about 29,000 dalton on sodium dodecylsulfate-polyacrylamide gel electrophoresis. The amino acid sequence of the N-terminal residues(21) of the enzyme was determined by automated sequence analysis. The sequence was Val-Thr-Thr-Lys-Gln-Thr-Asn-Ala-Pro-Trp-Gly-Leu-Gly-Asn-Ile-Ser-Thr-Thr-Asn-Lys-Leu. Comparison of this sequence with the N-terminal sequence of the p-roteinase K from Tritirachium album showed high similarity, i. e. 57.8% identical residues. The protease displayed a relatively high stability in sodium dodecyl sulfate.

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Analysis of N- Terminal Amino Acid Sequence of Catechol 2,3-dioxygenase from Aniline Degrading Delftia sp. JK-2 (Aniline 분해세균 Delftia sp. JK-2에서 분리된 Catechol 2,3-dioxygenase의 N-말단 아미노산 서열 분석)

  • Hwang Seon-Young;Kahng Hyung-Yeel;Oh Kye-Heon
    • Korean Journal of Microbiology
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    • v.41 no.1
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    • pp.13-17
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    • 2005
  • The aim of this work was to investigate the N-terminal amino acid sequence of catechol 2,3-dioxygenase isolated from Delftia sp. JK-2, which could utilize aniline as sole carbon, nitrogen and energy source. Molecular weight of the enzyme was determined to approximately 35 kDa by SDS-PAGE. N-terminal amino acid sequence of C2,3O from strain JK-2 was $^1MGVMRIGHASLKVMDMDAAVRHYENV^{26}$, and exhibited high sequence similarity with that of C2,3O from Pseudomonas sp., Comamonas sp. JS765, Comamonas test-osteroni, or Burkholderia sp. RP007. Approximately 950-bp C2,3O was obtained through PCR using the primers derived from N-terminal amino acid sequence. Analysis of the DNA sequence revealed that the deduced 296 amino acid sequences were determined, and it showed $100\%$ identity with C2,3O from Pseudomonas sp. AW-2 and $97\%$ similarity with Comamonas sp. JS765.

Terminal Amino Acid Sequences of Alkaline Amylase from Alkalophilic Bacillus sp. MB 809 and Their Homology (호알카리성 Bacillus sp. MB 809의 알카리성 아밀라제의 말단 아미노산 서열과 그 상동성)

  • Moo, Bae;Kang, Kyung
    • Korean Journal of Microbiology
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    • v.31 no.2
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    • pp.175-178
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    • 1993
  • Alkaline .alpha.-amylase expressed in the transformant, Baciollus subtills MB809, containing alkaline amylase gene cloned from alkalophilic Bacillus sp. AL-8, was purified through for step separation processes. The purified alkaline .alpha.-amylase had molecular weight of app[roximately 59, 000 daltons on SDS-PAGE and Sephaex G-100 gel filtration. Amino acid sequence of terminal portion of the enzyme was analyzed with pure amylase eluted form the SDS-PAGE gel. N-terminal amino acid sequence of .alpha.-amylase was determined by the Edman degradation method and resulted in $NH_{2}$-ser-thr-ala-pro-ser-(ile)-lys-ala-gly-thr-(ile)-leu. For C-terminal amino acid sequencing, purified .alpha.-amylase was digested with carboxypuptidase A and B, and reverse-phase HPLC gradient elution system resulted in -thr-trp-pro-lys-COOH.

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Isolation of $\beta$-Lactamase Inhibitory Protein from Streptomyces exfoliatus SMF19 and Cloning of the Corresponding Gene

  • PARK, HYEON-UNG;KYE JOON LEE
    • Journal of Microbiology and Biotechnology
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    • v.6 no.6
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    • pp.369-374
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    • 1996
  • The ${\beta}$-lactamase inhibitory protein (BLIP) produced by Streptomyces exfoliatus SMF19 was purified(33 kDa) and the N-terminal amino acid sequence was determined as NH2-ATSVVAWGGNND. Genomic DNA library of S. exfoliatus SMF19 was constructed in pWE15 and recombinants harbouring the corresponding gene were selected by colony hybridization to the mixture of 36-mer oligonucleotide designed from the N-terminal amino acid sequence. The corresponding gene (bliX) was isolated on a 4-kb ApaI fragment of S. exfoliatus SMF19 chromosomal DNA and then sequenced. The bliX consisting of 1, 119bp encoded a mature protein with a deduced amino acid sequence of 342 residues and also encoded a 40-amino-acid signal sequence. No significant sequence similarity to bliX was found by pairwise comparison using various protein and nucleotide sequences.

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The Structural Characterization of Recombinant Bovine Somatotropin Expressed in Escherichia coli (재조합 소성장호르몬의 구조적 특성)

  • 김정호;김훈주박은숙김준
    • KSBB Journal
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    • v.9 no.2
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    • pp.165-173
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    • 1994
  • In this paper we have described the structural characterization of recombinant bovine somatotropin produced in Escherichia coli. Recombinant bovine somatotropin consists of 191 amino acid residues with a calculated molecular weight of 21,802 Da. For fragmentation of recombinant bovine somatotropin, we have used trypsin, Staphylococcus aureus V8 pretease, CNBr, and mild acid hydrolysis method. Digestion and cleavage with these proteases and chemicals yielded peptides of various size for amino acid sequence determination. The N-terminal sequence analysis was carried out up to thirty residues. Because the design of the recombinant bovine somatotropin gene for expression was such that the coding sequence begins with an initiation codon, AUG, before Ala, the first amino acid of bovine somatotropin, we could expect the initial amino acid as N-formyl Met. But the first amino acid of this protein, expressed in E. coli cells as inclusion bodies, was Ala. And the amino acid composition of RP-HPLC purified recombinant bovine somatotropin was determined and no essencial difference was observed. The amino acid sequence of the recombinant bovine somatotropin was identical to that predicted from its recombinant gene. There was no processing or replacement of amino acid residues in recombinant bovine somatotropin expressed in E. coli. The hydropathy plot of recombinant bovine somatotropin revealed a hydrophobic region at the NH2-terminus and hydrophilic region at the COOH-terminus. The E. coli expression system is thought to be valuable for the expression of recombinant bovine somatotropin because protein was processed to remove the N-terminal Met residue by methionyl-aminopeptidase autonomously.

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N-Terminal Sequence of Soybean $\beta$- Amylase (대두 $\beta$- Amylase의 N-말단 아미노산 배열)

  • Ji, Ui-Sang;Kim, Gwan-Muk;Kim, Jun-Pyeong
    • The Korean Journal of Food And Nutrition
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    • v.4 no.2
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    • pp.161-166
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    • 1991
  • The blocked N-terminus and N-terminal sequence of soybean B-amylase were aetermined by analyzing the acidic peptides derived on peptic digestion of the enzyme. The acidic peptides were separated from the digest on a Dowex 50$\times$2 column(1X5cm) and purified by reversed phase-high performance liquid chromatography(RP-HPLC). The major acidic peptide, PEP-1, was a heptapeptlde. The N-terminal 7 amino acid sequence of soybean B-amylase was deduced to be acetyl-Ala-Thf-Ser-Asp-Ser-Asn-Met- from the results of sequence analysis of PEP-1 and amino acid analysis of other acidic peptides.

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Purification and Characterization of Cop, a Protein Involved in the Copy Number Control of Plasmid pE194

  • Kwak, Jin-Hwan;Kim, Jung-Ho;Kim, Mu-Yong;Choi, Eung-Chil
    • Archives of Pharmacal Research
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    • v.21 no.3
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    • pp.291-297
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    • 1998
  • Cop protein has been overexpressed in Escherichia coli using a T7 RNA polymerase system. Purification to apparent homogeneity was achieved by the sequential chromatography on ion exchange, affinity chromatography, and reverse phase high performance liquid chromatography system. The molecular weight of the purified Cop was estimated as 6.1 kDa by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE). But the molecular mass of the native state Cop was shown to be 19 kDa by an analytical high performance size exclusion chromatography, suggesting a trimer-like structure in 50 mM Tris-HCI buffer (pH 7.5) containing 100 mM NaCl. Cop protein Was calculated to contain $39.1% {\alpha}-helix, 16.8% {\beta}-sheet$, 17.4% turn, and 26.8% random structure. The DNA binding property of Cop protein expressed in E. coli Was preserved during the expression and purification process. The isoelectric point of Cop was determined to be 9.0. The results of amino acid composition analysis and N-terminal amino acid sequencing of Cop showed that it has the same amino acid composition and N-terminal amino acid sequence as those deduced from its DNA sequence analysis, except for the partial removal of N-terminal methionine residue by methionyl-aminopeptidase in E. coli.

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Comparison and Sequence Analysis of the 3` - terminal Regions of RNA 1 of Barley Yellow Mosaic Virus

  • Lee, Kui-Jae
    • Plant Resources
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    • v.1 no.2
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    • pp.92-97
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    • 1998
  • An isolate of barley yellow mosaic virus(BaYMV-HN) obtained from Haenam, Korea was compared with two BaYMV strains. BaYMV-Ⅱ-1 from Japan and BaYMV-G from Germany. The sequence of the 3'-terminal 3817nucleotides[excluding the poly (A) tail] of RNA 1 of BaYMV-HN was determined to start within a long open reading frame coding for a part of the NIa-VPg polymerase(26 amino acids). NIa-Pro polymerase (343 amino acids), NIb polymerase(528 amino acids) and the entire capsid protein(297 amino acids), which is followed by a noncoding region(NCR) of 235 nucelotides. In the partial ORFs, BaYMV-HN shows higher sequence homology with BaYMV-Ⅱ-1(99.5%) than BaYMV-G(92.7%). The 3' non-coding regions of BaYMV-HN(235nt) shows higher nucleotide sequence homology with BaYMV-G(235nt)(99.6%) than BaYMV-Ⅱ-1(231nt)(97.0%). The 3' NIa-Pro protein sequence of BaYMV-HN shows higher amino acid sequence homology with BaYMV-Ⅱ-1(95.0%) than BaYMV-G(93.6%), but, NIb protein sequence of BaYMV-HN shows same all amino acid sequence. The capsid protein sequence of BaYMV-HN(297aa) shows same with BaYMV-Ⅱ-1, and shows higher nucleotide sequence homology with BaYMV-UK (from United Kingdom)(97.3%) than BaYMV-G(96.9%) and G2(96.9%). Difference of capsid protein amino acid were 0-9 between the Japan, United Kingdom and Germany and were 2-6 between all Korean isolates. Many of the amino acid differences are located in the N-terminal regions of the capsid proteins from 1 to 74 amino acid positions.

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Cloning and Expression of the Aminopeptidase Gene from the Bacillus lichenformis In Bacillus subtilis

  • Kim, Jin-Sook;Lee, In-Soo;Lee, Seung-Won;Lee, Young-Phil;Jung, Chul-Ho;Kim, Hyung-Cheol;Choi, Soon-Yong
    • Journal of Microbiology and Biotechnology
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    • v.12 no.5
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    • pp.773-779
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    • 2002
  • A gene (hap) encoding aminopeptidase from the chromosomal DNA of Bacillus licheniformis was cloned. The gene is 1,347 bp long and encodes a 449 amino acid preproprotein with a major mature region of 401 amino acids (calculated molecular mass 43,241 Da). N-Terminal sequence of the purified protein revealed a potential presence of N-terminal propeptide. The deduced primary amino acid sequence and the mass analysis of the purified protein suggested that a C-terminal peptide YSSVAQ was also cleaved off by a possible endogeneous protease. Tho amino acid sequence displayed 58% identity with that of the aminopeptidase from alkaliphilic Bacillus halodurans. This bacterial enzyme was overexpressed in recombinant Escherichia coli and Bacillus subtilis cells. Clones containing the intact hap gene, including its own promoter and signal sequence, gave rise to the synthesis of extracellular and thrmostable enzyme by B. subtilis transformants. The secreted protein exhibited the same biochemical properties and the similar apparent molecular mass as the B. lichenzyormis original enzyme.