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A novel chimaeric flocculation protein enhances flocculation in Saccharomyces cerevisiae

机译:一种新型的嵌合絮凝蛋白增强酿酒酵母中的絮凝

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摘要

Yeast flocculation is the reversible formation of multicellular complexes mediated by lectin-like cell wall proteins binding to neighbouring cells. Strong flocculation can improve the inhibitor tolerance and fermentation performance of yeast cells in second generation bioethanol production. The strength of flocculation increases with the size of the flocculation protein and is strain dependent. However, the large number of internal repeats in the sequence of FLO1 from Saccharomyces cerevisiae S288c makes it difficult to recombinantly express the gene to its full length. In the search for novel flocculation genes resulting in strong flocculation, we discovered a DNA sequence, FLONF, that gives NewFlo phenotype flocculation in S. cerevisiae CEN.PK 113-7D. The nucleotide sequence of the internal repeats of FLONF differed from those of FLO1. We hypothesized that a chimaeric flocculation gene made up of a FLO1 variant derived from S. cerevisiae S288c and additional repeats from FLONF from S. cerevisiae CCUG 53310 would be more stable and easier to amplify by PCR. The constructed gene, FLOw, had 22 internal repeats compared to 18 in FLO1. Expression of FLOw in otherwise non-flocculating strains led to strong flocculation. Despite the length of the gene, the cassette containing FLOw could be easily amplified and transformed into yeast strains of different genetic background, leading to strong flocculation in all cases tested. The developed gene can be used as a self-immobilization technique or to obtain rapidly sedimenting cells for application in e.g. sequential batches without need for centrifugation.
机译:酵母絮凝是由凝集素样细胞壁蛋白与邻近细胞结合而介导的多细胞复合物的可逆形成。强力絮凝可以提高第二代生物乙醇生产中酵母细胞的抑制剂耐受性和发酵性能。絮凝的强度随絮凝蛋白的大小而增加,并且是取决于菌株的。然而,来自酿酒酵母S288c的FLO1序列中的大量内部重复使得难以重组表达该基因至其全长。在寻找导致强烈絮凝的新型絮凝基因时,我们发现了DNA序列FLONF,该序列在酿酒酵母CEN.PK 113-7D中提供了NewFlo表型絮凝。 FLONF的内部重复的核苷酸序列不同于FLO1的核苷酸序列。我们假设由源自酿酒酵母S288c的FLO1变体和源自酿酒酵母CCUG 53310的FLONF的其他重复组成的嵌合絮凝基因将更稳定,更易于通过PCR扩增。构建的基因FLOw具有22个内部重复,而FLO1中有18个。 FLOw在其他非絮凝菌株中的表达导致强烈絮凝。尽管基因很长,但含有FLOw的盒可以轻松扩增并转化为具有不同遗传背景的酵母菌株,从而在所有测试情况下均导致强烈的絮凝。所开发的基因可以用作自固定技术或获得快速沉积的细胞以用于例如不需要离心的连续批次。

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