Dietvorst J, Londesborough J, Steensma H Y
Institute of Biology Leiden, Leiden University, Wassenaarseweg 64, 2333 AL Leiden, The Netherlands.
Yeast. 2005 Jul 30;22(10):775-88. doi: 10.1002/yea.1279.
Maltotriose is the second most abundant fermentable sugar in wort and, due to incomplete fermentation, residual maltotriose in beer causes both quality and economic problems in the brewing industry. To identify genes that might improve utilization of maltotriose, we developed a library containing genomic DNA from four lager strains and a laboratory Saccharomyces cerevisiae strain and isolated transformants that could grow on YP/2% maltotriose in the presence of 3 mg/l of the respiratory inhibitor antimycin A. In this way we found a gene which shared 74% similarity with MPH2 and MPH3, 62% similarity with AGT1 and 91% similarity with MAL61 and MAL31, all encoding known maltose transporters. Moreover, the gene shared an even higher similarity (98%) with the uncharacterized Saccharomyces pastorianus mty1 gene (M. Salema-Oom, unpublished; NCBI Accession No. AJ491328). Therefore, we named the gene MTT1 (mty1-like transporter). We showed that the gene was present in four different lager strains but was absent from the laboratory strain CEN.PK113-7D. The ORF in the plasmid isolated from the library lacks 66 base pairs from the 3'-end of MTT1 but instead contains 54 bp of the vector. We named this ORF MTT1alt (NCBI Accession No. DQ010174). 14C-Maltose and repurified 14C-maltotriose were used to show that MTT1 and, especially, MTT1alt, encode maltose transporters for which the ratio between activities to maltotriose and maltose is higher than for most known maltose transporters. Introduction of MTT1 or MTT1alt into lager strain A15 raised maltotriose uptake by about 17% or 105%, respectively.
麦芽三糖是麦芽汁中第二丰富的可发酵糖,由于发酵不完全,啤酒中的残留麦芽三糖给酿造业带来了质量和经济问题。为了鉴定可能改善麦芽三糖利用的基因,我们构建了一个文库,其中包含四种贮藏啤酒酵母菌株和一株实验室酿酒酵母菌株的基因组DNA,并分离出了在3 mg/l呼吸抑制剂抗霉素A存在的情况下能够在YP/2%麦芽三糖培养基上生长的转化子。通过这种方式,我们发现了一个与MPH2和MPH3有74%相似性、与AGT1有62%相似性、与MAL61和MAL31有91%相似性的基因,这些基因均编码已知的麦芽糖转运蛋白。此外,该基因与未鉴定的巴氏酵母mty1基因具有更高的相似性(98%)(M. Salema-Oom,未发表;NCBI登录号AJ491328)。因此,我们将该基因命名为MTT1(mty1样转运蛋白)。我们发现该基因存在于四种不同的贮藏啤酒酵母菌株中,但在实验室菌株CEN.PK113-7D中不存在。从文库中分离出的质粒中的开放阅读框(ORF)在MTT1的3'端缺少66个碱基对,而是包含54 bp的载体序列。我们将这个ORF命名为MTT1alt(NCBI登录号DQ010174)。使用14C-麦芽糖和重新纯化的14C-麦芽三糖来证明MTT1,尤其是MTT1alt,编码麦芽糖转运蛋白,其对麦芽三糖和麦芽糖的活性比值高于大多数已知的麦芽糖转运蛋白。将MTT1或MTT1alt导入贮藏啤酒酵母菌株A15中,麦芽三糖的摄取量分别提高了约17%或105%。