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Novel homologous lactate transporter improves l-lactic acid production from glycerol in recombinant strains of Pichia pastoris

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    • 바이오플라스틱
      1. 플라스틱
    • 바이오정밀화학
      1. 기타
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      1. 계면활성제⁄증점제
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      1. 치료제
      2. 식품첨가제
논문

Novel homologous lactate transporter improves l-lactic acid production from glycerol in recombinant strains of Pichia pastoris

학술지

Microbial cell factories

저자명

de Lima, Pollyne Borborema Almeida; Mulder, Kelly Cristina Leite; Melo, Nadiele Tamires Moreira; Carvalho, Lucas Silva; Menino, Gisele Soares; Mulinari, Eduardo; de Castro, Virgilio H.; dos Reis, Thaila F.; Goldman, Gustavo Henrique; Magalhã es, Beatriz Simas; Parachin, Ná dia Skorupa

초록

<P><B>Background</B></P><P>Crude glycerol is the main byproduct of the biodiesel industry. Although it can have different applications, its purification is costly. Therefore, in this study a biotechnological route has been proposed for further utilization of crude glycerol in the fermentative production of lactic acid. This acid is largely utilized in food, pharmaceutical, textile, and chemical industries, making it the hydroxycarboxylic acid with the highest market potential worldwide. Currently, industrial production of lactic acid is done mainly using sugar as the substrate. Thus here, for the first time, <I>Pichia pastoris</I> has been engineered for heterologous <SMALL>L</SMALL>-lactic acid production using glycerol as a single carbon source. For that, the <I>Bos taurus</I> lactate dehydrogenase gene was introduced into <I>P. pastoris</I>. Moreover, a heterologous and a novel homologous lactate transporter have been evaluated for <SMALL>L</SMALL>-lactic acid production.</P><P><B>Results</B></P><P>Batch fermentation of the <I>P. pastoris</I> X-33 strain producing <I>LDHb</I> allowed for lactic acid production in this yeast. Although <I>P. pastoris</I> is known for its respiratory metabolism, batch fermentations were performed with different oxygenation levels, indicating that lower oxygen availability increased lactic acid production by 20&nbsp;%, pushing the yeast towards a fermentative metabolism. Furthermore, a newly putative lactate transporter from <I>P. pastoris</I> named PAS has been identified by search similarity with the lactate transporter from <I>Saccharomyces cerevisiae</I> Jen1p. Both heterologous and homologous transporters, Jen1p and PAS, were evaluated in one strain already containing LDH activity. Fed-batch experiments of <I>P. pastoris</I> strains carrying the lactate transporter were performed with the batch phase at aerobic conditions followed by an aerobic oxygen-limited phase where production of lactic acid was favored. The results showed that the strain containing PAS presented the highest lactic acid titer, reaching a yield of approximately 0.7&nbsp;g/g.</P><P><B>Conclusions</B></P><P>We showed that <I>P. pastoris</I> has a great potential as a fermentative organism for producing <SMALL>L</SMALL>-lactic acid using glycerol as the carbon source at limited oxygenation conditions (below 0.05&nbsp;% DO in the bioreactor). The best strain had both the LDHb and the homologous lactate transporter encoding genes expressed, and reached a titer 1.5 times higher than the strain with the <I>S. cerevisiae</I> transporter. Finally, it was also shown that increased lactic acid production was concomitant to reduction of acetic acid formation by half.</P>

발행연도

2016

발행기관

BioMed Central

라이선스

cc-by

ISSN

1475-2859

15

페이지

pp.158

주제어

L-Lactic acid; Pichia (Komagataella) pastoris; Lactate transporter; Oxygen limited fermentation; Lactate dehydrogenase

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논문; 2016-09-15

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