• 제목/요약/키워드: amino acid homologous region

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Molecular genetic analysis of phytochelatin synthase genes in Arabidopsis

  • Ha, Suk-Bong
    • 한국식물학회:학술대회논문집
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    • 한국식물학회 2002년도 춘계학술발표대회:발표눈문요지록
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    • pp.62-72
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    • 2002
  • This study has investigated the biosynthesis and function of the heavy metal binding peptides, the phytochelatins, in plants. PCs are synthesised enzymatically from glutathione by the enzyme PC synthase in the presence of heavy metal ions. Using Arabidopsis thaliana as a model organism cadmium-sensitive, phytochelatin-deficient mutants have been isolated and characterised in previous studies. The cadl mutants have wildtype levels of glutathione, are PC deficient and lack PC synthase activity. Thus, the CADl gene has been proposed to encode PC synthase. The CADl gene was isolated by a positional cloning strategy The gene was mapped and a candidate identified. Each of four cadl mutants had a single base pair change in the candidate gene and the cadmium-sensitive, cadl phenotype was complemented by the candidate gene. This demonstrated the CADl gene had been cloned. A homologous gene in the fission yeast, Schizosaccharomyces pombe was identified through database searches. A targeted-deletion mutation of this gene was constructed and the mutant, like cadl mutants of Arabidopsis, was cadmium-sensitive and PC-deficient. A comparison of the redicted amino acid sequences reveals a highly conserved N-terminal region Presumed to be the catalytic domain and a variable C-terminal region containing multiple Cys residues proposed to be involved in activation of the enzyme by metal ions. Similar genes were also identified in animal species. The Arabidopsis CADl/AtPCSl and S. pombe SpbPCS genes were expressed in E. coli and were shown to be sufficient for glutathione-dependent, heavy metal activate PC synthesis in vitro, thus demonstrating these genes encode PC synthase enzymes. Using RT-PCR, AtPCSl expression appeared to be independent of Cd exposure. However, at higher levels of Cd exposure a AtPCSl-CUS reporter gene construct appeared to be more highly expressed. Using the reporter gene construct, AtPCSl was expressed most tissues. Expression appeared to be greater in younger tissues and same higher levels of expression was observed in some regions, including carpels and the base of siliques. AtPCS2 was a functional gene encoding an active PC synthase. However, its Pattern of expression and the phenotype of a mutant (or antisense line) have not been determined. Assuming the gene is functional then it has clearly been maintained through evolution and must provide some selective advantage. This implies that, at least in some cells or tissue, it is likely to be the dominant PC synthase expressed. This remains to be determined

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DMBA로 유도된 햄스터 협낭암종에서 ras 유전자 변이에 관한 연구 (STUDY ON MUTATION OF RAS GENE IN DMBA INDUCED CARCINOMA OF HAMSTER BUCCAL POUCH)

  • 송선철;김경욱;이재훈;김창진
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제26권6호
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    • pp.581-590
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    • 2000
  • Alterations in the cellular genome affecting the expression or function of genes controlling cell growth and differentiation are considered to be the main cause of cancer. Over 30 oncogenes can be activated by insertional mutagenesis, single point mutations, chromosomal translocations and gene amplification. The ras oncogenes have been detected in $15{\sim}20%$ of human tumors that include some of the most common forms of human neoplasia and are known to acquire their transforming properties by single point mutations in two domains of their coding sequences, most commonly in codons 12 and 61. The ras gene family consists of three functional genes, N-ras, K-ras and H-ras which encode highly similar proteins of 188 or 189 amino acid residues generically known as P21. ras proteins have been shown to bind GTP and GTP, and possess intrinsic GTPase activity. Experimental study was performed to observe the mutational change of the ras gene family and apply the results to the clinical activity. 36 Golden Syrian Hamster each weighing $60{\sim}80g$ were used and painted with 0.5% DMBA by 3 times weekly on the right buccal cheek(experimental side) for 6, 8, 10, 12, 14 and 16 weeks. Left buccal cheek (control side) was treated with mineral oil as the same manner of the right side. The hamsters were sacrificed on the 6, 8, 10, 12, 14 & 16 weeks. Normal and tumor tissues from paraffin block were completely dissected by microdissection and DNA from both tissue were isolated by proteinase K/phenol/chloroform extraction. Segments of the K-ras and H-ras gene were amplified by PCR using the oligonucleotide primers corresponding to the homologous region (codon 12 and 61) of the hamster gene, and then confirmational change of ras genes was observed by SSCP and autosequencing analysis. The results were as follows : 1. Malignant lesion could be found in the experimental side from the experimental six weeks. 2. One hamster among six showed point mutation of the H-ras codon 12($G{\rightarrow}A$ transition) at the experimental 10 and 14 weeks. 3. One of six at 6 weeks, two of six at 8 weeks and one of six at 12 weeks revealed the confirmational change of the H-ras codon 61($A{\rightarrow}T$ transversion). 4. The incidence of point mutation of H-ras codon 12 and 61 were 5.5%(2 of 36) and 11%(4 of 36) respectively. 5. Point mutation of the K-ras could not be seen during the whole experimental period. Form the above results, these findings strongly support the concept that H-ras oncogenes may have the influence of the DMBA induced carcinoma of hamster buccal pouch.

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Saccharomyces diastaticus의 포자형성 특이 글루코아밀라제의 특성 (Characterization of Sporulation-Specific Glucoamylase of Saccharomyces diastaticus)

  • 김은주;안종석;강대욱
    • 생명과학회지
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    • 제20권5호
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    • pp.683-690
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    • 2010
  • 효모 Saccharomyces diastaticus 는 세포 외로 분비되는 glucoamylase I, II, III 동위효소 중 하나를 생산하여 전분을 가수분해하여 포도당을 생성할 수 있다. Glucoamylase I, II, III는 STA1, STA2, STA3 유전자에 의해 각각 암호화된다. 효모 Saccharomyces 속이 포자가 형성되는 시기에 세포 내에서 특이적으로 발현된다고 알려진 glucoamylase (SGA)의 분자생물학적 및 생화학적 연구를 수행하기 위한 일환으로 S. diastaticus YIY 345 형질전환체의 배양 상등액으로부터 SGA 정제를 시도하였다. 황산암모늄 침전, DEAE-Sephadex A-50, CM-Sephadex C-50, Sephadex G-200 chromatography 등의 정제과정을 거쳐서 비특이 활성이 174배 증가된 0.22 mg의 순수한 SGA를 얻었다. HPLC와 SDS-PAGE 분석을 통해 이 효소는 63, 68 kDa의 단위체로 구성된 이합체임을 확인할 수 있었다. Con-A Sepharose 친화성 크로마토그피와 탈당쇄 효소를 처리한 결과로부터 SGA는 N-연결형 당쇄로 수식되었으며 단백질 부분은 59 kDa이었다. 정제한 SGA와 세포 외 분비성 glucoamylase의 효소학적 특성을 조사하고 비교한 결과 SGA의 최적 pH와 온도는 각각 5.5와 $45^{\circ}C$로 나타났으며 세포 외 분비성 glucoamylase는 5.0과 $50^{\circ}C$로 나타났다. SGA는 세포 외로 분비되는 glucoamylase에 비해 열처리 및 SDS에 대해 더 민감한 반응성을 나타내었다.

전사 수준에서 repABC 유전자 발현을 조절하는 CopA 단백질의 역할 (Role of CopA to Regulate repABC Gene Expression on the Transcriptional Level)

  • 김삼웅;갈상완;지원재;방우영;김태완;백인규;방규호
    • 생명과학회지
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    • 제34권2호
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    • pp.86-93
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    • 2024
  • 플라스미드의 복제는 엄격하게 조절되어야 하기 때문에 일반적으로 rolling circle 복제를 수행하는 플라스미드들은 복제 개시인자인 RepB는 전사 및 번역 수준에서 엄격하게 조절되어 일정한 copy number를 유지한다. 플라스미드 pJB01에는 단일 오페론으로 구성된 세 개의 orfs (copA, repB, repC 또는 repABC)가 포함되어 있다. 아미노산 서열 분석에서 pJB01 CopA는 다른 플라스미드의 복제 수 조절 단백질로서 Cops와 상동성을 보였다. pMV158의 CopG와 비교할 때, CopA는 플라스미드의 일반화된 억제자의 모티브로 알려진 RHH (ribbon-helix-helix)를 형성하는 것으로 추정된다. gel mobility shift assay 결과 정제된 융합 단백질이 repABC 오페론의 operator 영역에 결합하는 것으로 나타났다. 전사 수준에 대한 CopA의 기능적 역할을 조사하기 위해 CopA R16M, K26R 및 E50V와 같은 세 개의 포인트 돌연변이가 CopA의 코딩 프레임에서 구성되었다. CopA R16M, K26R 및 E50V 돌연변이의 repABC mRNA 수준은 CopA wt보다 각각 1.84, 1.78 및 2.86배 증가했다. 또한 세 개의 CopA 유전자의 돌연변이로 인한 복제 수도 CopA wt보다 각각 1.86, 1.68 및 2.89배 증가했다. 이러한 결과는 CopA가 전사 억제자이며 복제 개시자로서 repABC mRNA 및 RepB 단백질 수를 감소시킴으로써 pJB01의 복제 수를 감소시키는 것으로 제의된다.