기관회원 [로그인]
소속기관에서 받은 아이디, 비밀번호를 입력해 주세요.
개인회원 [로그인]

비회원 구매시 입력하신 핸드폰번호를 입력해 주세요.
본인 인증 후 구매내역을 확인하실 수 있습니다.

회원가입
서지반출
Structural Investigation and Homology Modeling Studies of Native and Truncated Forms of $alpha$-Amylases from Sclerotinia sclerotiorum
[STEP1]서지반출 형식 선택
파일형식
@
서지도구
SNS
기타
[STEP2]서지반출 정보 선택
  • 제목
  • URL
돌아가기
확인
취소
  • Structural Investigation and Homology Modeling Studies of Native and Truncated Forms of $alpha$-Amylases from Sclerotinia sclerotiorum
  • Structural Investigation and Homology Modeling Studies of Native and Truncated Forms of $alpha$-Amylases from Sclerotinia sclerotiorum
저자명
Ben Abdelmalek. Imen,Urdaci. Maria Camino,Ali. Mamdouh Ben,Denayrolles. Muriel,Chaignepain. Stephane,Limam. Ferid,Bejar. Samir,M
간행물명
Journal of microbiology and biotechnology
권/호정보
2009년|19권 11호|pp.1306-1318 (13 pages)
발행정보
한국미생물생명공학회
파일정보
정기간행물|ENG|
PDF텍스트
주제분야
기타
이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
서지반출

기타언어초록

The filamentous ascomycete Sclerotinia sclerotiorum is well known for its ability to produce a large variety of hydrolytic enzymes. Two $alpha$-amylases ScAmy54 and ScAmy43 predicted to play an important role in starch degradation were showed to produce specific oligosaccharides essentially maltotriose that have a considerable commercial interest. Primary structure of the two enzymes was established by N-terminal sequencing, MALDI-TOF masse spectrometry and cDNA cloning. The two proteins have the same N-terminal catalytic domain and ScAmy43 derived from ScAmy54 by truncation of 96 amino acids at the carboxyl-terminal region. Data of genomic analysis suggested that the two enzymes originated from the same $alpha$-amylase gene and that truncation of ScAmy54 to ScAmy43 occurred probably during S. sclerotiorum cultivation. The structural gene of Scamy54 consisted of 9 exons and 8 introns, containing a single 1,500-bp open reading frame encoding 499 amino acids including a signal peptide of 21 residues. ScAmy54 exhibited high amino acid homology with other liquefying fungal $alpha$-amylases essentially in the four conserved regions and in the putative catalytic triad. A 3D structure model of ScAmy54 and ScAmy43 was built using the 3-D structure of 2guy from A. niger as template. ScAmy54 is composed by three domains A, B, and C, including the well-known $(eta/alpha)_8$ barrel motif in domain A, have a typical structure of $alpha$-amylase family, whereas ScAmy43 contained only tow domains A and B is the first fungal $alpha$-amylase described until now with the smallest catalytic domain.