提高蛋氨酸含量的多聚DNA酵母杂交种的构建:杂交种酵母的技术功能特性。

A Halász, M Szakács-Dobozi, A Baráth
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引用次数: 1

摘要

蛋氨酸是人体营养中的一种限制性必需氨基酸,为克服可能出现的过量,提高生物利用度,蛋氨酸应以蛋白质结合形式供给。因此,插入多相遇编码DNA序列是提高酵母蛋氨酸含量的更有效的解决方案。以营养不良突变株酿酒酵母CB89为材料,构建了多元DNA杂交酵母。将合成的编码蛋氨酸多肽的DNA序列插入到pvt - u100载体的多连接子区,质粒复制子为2 mu。大肠杆菌HB101细胞转化后,通过消化微制剂检测结扎转化效率。用载体多相遇插入物和只用质粒载体转染酿酒葡萄球菌CB89。杂交酵母在无公害培养基上选育。pvt - u100可以作为酿酒葡萄球菌DNA序列表达的载体。该载体含有ADC1基因的启动子,在启动子的下游有一个多连接体序列,包括BamHI, HindIII, PvuII, SacI, Xhol的独特限制性内切酶位点。多连接子序列后面是ADC1基因的转录停止位点和多聚腺苷化信号。质粒pvt - u100具有葡萄球菌(S. cerevisiae, URA3)和大肠杆菌(E. coli, amp, per F)的选择标记。结果表明,多满足DNA杂种的蛋氨酸含量受插入片段长度的影响。含有600 bp寡核苷酸插入的融合杂交种表现出最好的价值。测定了多聚DNA杂交种和亲本菌株CB89蛋白质亚组分中蛋氨酸含量的分布与葡萄糖浓度和曝气强度的关系。合成蛋氨酸的增加出现在1 + 2和残渣中。比较了亲本株和杂交种的全细胞和细胞壁(残余)的技术功能特性。结果表明,细胞壁组分中蛋氨酸的富集提高了乳化液的乳化能力。DNA杂交酵母对蛋氨酸含量的生物利用度优于亲本菌株,在乳清培养基中繁殖效果最好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Construction of poly-met DNA yeast hybrids for increased methionine content: technofunctional properties of the hybrid yeasts.

Methionine is a limiting essential amino acid in human nutrition, to overcome the possible overdosage and improve bioavailability methionine supply should be in protein bound form. So insertion a poly-met encoding DNA sequence results a more efficient solution in increasing methionine content of yeast. Poly-met DNA yeast hybrids were constructed of Saccharomyces cerevisiae CB89, an auxotrophic mutant strain. Synthetic DNA sequence encoding methionine polypeptide was inserted into the polylinker region of pVT-U 100 vector with 2 mu plasmid replicon. After transformation of E. coli HB101 cells the efficiency of the ligation and transformation was checked by digesting the minipreps. S. cerevisiae CB89 was transformed with vector-poly-met insert and with the plasmid vector only as well. Hybrid yeasts were selected on uracilless medium. PVT-U 100 can be used as vector for the expression of DNA sequence in S. cerevisiae. The vector harbours the promoter of ADC1 gene immediately downstream from the promoter lies a polylinker sequence comprising unique restriction enzyme sites for BamHI, HindIII, PvuII, SacI, Xhol. The polylinker sequence is followed by the transcriptional stop site and polyadenylation signal of ADC1 gene. Plasmid pVT-U 100 has selection markers for S. cerevisiae (URA3) and for E. coli (amp, per F). Results show that the poly-met DNA hybrids methionine content is influenced by the length of the insert. Fusion hybrids containing 600 bp oligo insert showed the best values. Distribution of methionine content in the protein subfractions of polymet DNA hybrid and parent strain CB89 was determined in dependence of glucose concentration and aeration intensity. The increase in synthesized methionine appeared in fractions 1 + 2 and residue. Technofunctional properties of parent strains and hybrids were compared for whole cells and cell wall (residue). Results demonstrate that enrichment in methionine in the cell wall fraction resulted improvement of emulsifying ability. Bioavailability of methionine content was better in DNA hybrid yeast than in parent strain and was the best when propagated in whey medium.

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