Surface binding sites in amylase have distinct roles in recognition of starch structure motifs and degradation

被引:39
作者
Cockburn, Darrell [1 ]
Nielsen, Morten M. [1 ]
Christiansen, Camilla [1 ,2 ]
Andersen, Joakim M. [1 ]
Rannes, Julie B. [1 ]
Blennow, Andreas [2 ]
Svensson, Birte [1 ]
机构
[1] Tech Univ Denmark, Dept Syst Biol, Enzyme & Prot Chem, DK-2800 Lyngby, Denmark
[2] Univ Copenhagen, Dept Plant & Environm Sci, DK-1871 Frederiksberg C, Denmark
关键词
Barley alpha-amylase; Starch surface binding; Starch degradation; BARLEY ALPHA-AMYLASE; SUBSTRATE-BINDING; DOMAIN-C; GRANULES; AMYLOSE; PAIR; AMYLOPECTIN; COMPONENTS; SINGLE;
D O I
10.1016/j.ijbiomac.2015.01.054
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Carbohydrate converting enzymes often possess extra substrate binding regions that enhance their activity. These can be found either on separate domains termed carbohydrate binding modules or as so-called surface binding sites (SBSs) situated on the catalytic domain. SBSs are common in starch degrading enzymes and critically important for their function. The affinity towards a variety of starch granules as well as soluble poly- and oligosaccharides of barley alpha-amylase 1 (AMY1) wild-type and mutants of two SBSs (SBS1 and SBS2) was investigated using Langmuir binding analysis, confocal laser scanning microscopy, affinity gel electrophoresis and surface plasmon resonance to unravel functional roles of the SBSs. SBS1 was critical for binding to different starch types as K-d increased by 7-62-fold or was not measurable upon mutation. By contrast SBS2 was particularly important for binding to soluble polysaccharides and oligosaccharides with alpha-1,6 linkages, suggesting that branch points are key structural elements in recognition by SBS2. Mutation at both SBS1 and SBS2 eliminated binding to all starch granule types tested. Taken together, the findings indicate that the two SBSs act in concert to localize AMY1 to the starch granule surface and that SBS2 works synergistically with the active site in the degradation of amylopectin. (C) 2015 Elsevier B.V. All rights reserved.
引用
收藏
页码:338 / 345
页数:8
相关论文
共 48 条
[1]   BIOSYNTHESIS AND DEGRADATION OF STARCH IN HIGHER-PLANTS [J].
BECK, E ;
ZIEGLER, P .
ANNUAL REVIEW OF PLANT PHYSIOLOGY AND PLANT MOLECULAR BIOLOGY, 1989, 40 :95-117
[2]   Structure function relationships of transgenic starches with engineered phosphate substitution and starch branching [J].
Blennow, A ;
Wischmann, B ;
Houborg, K ;
Ahmt, T ;
Jorgensen, K ;
Engelsen, SB ;
Bandsholm, O ;
Poulsen, P .
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2005, 36 (03) :159-168
[3]   The molecular deposition of transgenically modified starch in the starch granule as imaged by functional microscopy [J].
Blennow, A ;
Hansen, M ;
Schulz, A ;
Jorgensen, K ;
Donald, AM ;
Sanderson, J .
JOURNAL OF STRUCTURAL BIOLOGY, 2003, 143 (03) :229-241
[4]   Helix-breaking news: fighting crystalline starch energy deposits in the cell [J].
Blennow, Andreas ;
Engelsen, Soren B. .
TRENDS IN PLANT SCIENCE, 2010, 15 (04) :236-240
[5]   Structure and thermodynamic melting parameters of wheat starches with different amylose content [J].
Bocharnikova, I ;
Wasserman, LA ;
Krivandin, AV ;
Fornal, J ;
Blaszczak, W ;
Chernykh, VY ;
Schiraldi, A ;
Yuryev, VP .
JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2003, 74 (03) :681-695
[6]  
Bogracheva TY, 1998, BIOPOLYMERS, V45, P323, DOI 10.1002/(SICI)1097-0282(19980405)45:4<323::AID-BIP6>3.3.CO
[7]  
2-3
[8]   The 'pair of sugar tongs' site on the non-catalytic domain C of barley α-amylase participates in substrate binding and activity [J].
Bozonnet, Sophie ;
Jensen, Morten T. ;
Nielsen, Morten M. ;
Aghajari, Nushin ;
Jensen, Malene H. ;
Kramhoft, Birte ;
Willemoes, Martin ;
Tranier, Samuel ;
Haser, Richard ;
Svensson, Birte .
FEBS JOURNAL, 2007, 274 (19) :5055-5067
[9]   The Carbohydrate-Active EnZymes database (CAZy): an expert resource for Glycogenomics [J].
Cantarel, Brandi L. ;
Coutinho, Pedro M. ;
Rancurel, Corinne ;
Bernard, Thomas ;
Lombard, Vincent ;
Henrissat, Bernard .
NUCLEIC ACIDS RESEARCH, 2009, 37 :D233-D238
[10]   Concerted suppression of all starch branching enzyme genes in barley produces amylose-only starch granules [J].
Carciofi, Massimiliano ;
Blennow, Andreas ;
Jensen, Susanne L. ;
Shaik, Shahnoor S. ;
Henriksen, Anette ;
Buleon, Alain ;
Holm, Preben B. ;
Hebelstrup, Kim H. .
BMC PLANT BIOLOGY, 2012, 12