<p>Post-acidification is a common phenomenon in fermented milk that can cause adverse effects, in which lactic acid bacteria used as starter cultures continue the lactic acid fermentation during storage. Lactate dehydrogenase (LDH) is a key enzyme for lactic acid fermentation. Therefore, the control of LDH could be one of the solutions to prevent post-acidification. In the present study, four genes (<i>ldhL</i>1, <i>ldhL</i>2, <i>ldhL</i>3, and <i>ldhL</i>4) encoding <span>l</span>-LDH were identified by whole genome sequencing of the <i>Lacticaseibacillus casei</i> HY2782, cloned into expression vector, pET22b (+), transformed into <i>Escherichia coli</i> BL21 (DE3), and expressed by IPTG induction. Four recombinant <span>l</span>-LDHs were purified using Ni-NTA agarose column and characterized. The molecular weights of purified <span>l</span>-LDHs were 30–37 kDa on sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Among the four <span>l</span>-LDHs, <span>l</span>-LDH3 exhibited the highest enzyme activity. <span>l</span>-LDH3 exhibited maximal activity of 302,343.16 U/mg at 43°C and pH 4.0 in the presence of 8mM fructose 1,6-bisphosphate. In acidic condition, <span>l</span>-LDH3 was activated by 2 mM of Mg<sup>2+</sup>, Ca<sup>2+</sup> and Mn<sup>2+</sup> ions, inhibited by Zn<sup>2+</sup> and Cu<sup>2+</sup> ions. In addition, activity of <span>l</span>-LDH3 was gradually decreased as KH<sub>2</sub>PO<sub>4</sub> concentration increased. Consequently, the <span>l</span>-LDH3 seems to be the major enzyme among the <span>l</span>-LDHs of <i>L. casei</i> HY2782 and may play an important role in lactic acid fermentation of this strain. Therefore, the inhibition of <span>l</span>-LDH3 activity using Zn<sup>2+</sup>, Cu<sup>2+</sup>and KH<sub>2</sub>PO<sub>4</sub> could be one of the solutions to mitigate the post-acidification caused by <i>L. casei</i> HY2782.</p>

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Overexpression and Characterization of L-Lactate Dehydrogenase from Lacticaseibacillus casei HY2782 to Control Post-Acidification in Yogurt

  • Ju-Eun Lee,
  • Gawon Hwang,
  • Jae-Hwan Lee,
  • Geun-Bae Kim

摘要

Post-acidification is a common phenomenon in fermented milk that can cause adverse effects, in which lactic acid bacteria used as starter cultures continue the lactic acid fermentation during storage. Lactate dehydrogenase (LDH) is a key enzyme for lactic acid fermentation. Therefore, the control of LDH could be one of the solutions to prevent post-acidification. In the present study, four genes (ldhL1, ldhL2, ldhL3, and ldhL4) encoding l-LDH were identified by whole genome sequencing of the Lacticaseibacillus casei HY2782, cloned into expression vector, pET22b (+), transformed into Escherichia coli BL21 (DE3), and expressed by IPTG induction. Four recombinant l-LDHs were purified using Ni-NTA agarose column and characterized. The molecular weights of purified l-LDHs were 30–37 kDa on sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Among the four l-LDHs, l-LDH3 exhibited the highest enzyme activity. l-LDH3 exhibited maximal activity of 302,343.16 U/mg at 43°C and pH 4.0 in the presence of 8mM fructose 1,6-bisphosphate. In acidic condition, l-LDH3 was activated by 2 mM of Mg2+, Ca2+ and Mn2+ ions, inhibited by Zn2+ and Cu2+ ions. In addition, activity of l-LDH3 was gradually decreased as KH2PO4 concentration increased. Consequently, the l-LDH3 seems to be the major enzyme among the l-LDHs of L. casei HY2782 and may play an important role in lactic acid fermentation of this strain. Therefore, the inhibition of l-LDH3 activity using Zn2+, Cu2+and KH2PO4 could be one of the solutions to mitigate the post-acidification caused by L. casei HY2782.