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Altered expression of lactate dehydrogenase and monocarboxylate transporter involved in lactate metabolism in broiler wooden breast

机译:改变乳酸脱氢酶和单羧酸盐转运蛋白在肉鸡木乳房中乳酸代谢的表达

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摘要

Wooden breast (WB) results in significant losses to the broiler industry due to reductions in meat quality. While the etiology of WB is unknown, it is believed to be associated with localized hypoxia and decreased lactate levels in skeletal muscles, indicating the presence of altered lactate metabolism in WB. We hypothesized that the expression levels of the major signaling molecules that control lactate metabolism, including lactate dehydrogenases (LDHA and LDHB) and monocarboxylate transporters (MCT1 and MCT4), were altered in WB. Therefore, the objectives of this study were to evaluate whether there were changes in mRNA and protein levels of LDHA, LDHB, MCT1, and MCT4 in WB compared to normal breast (NB) muscles. Biochemical analysis for LDH enzyme activity in NB and WB muscles was studied. MicroRNA375 (miR-375) expression, known to be inversely associated with LDHB protein expression in human cells, was also investigated. The level of LDHA mRNA was 1.7-fold lower in WB tissues than in NB tissues (P < 0.0001). However, the LDHA protein levels were similar in WB and NB tissues. In contrast, the levels of LDHB mRNA and protein were 8.4-fold higher (P < 0.002) and 13.6-fold higher (P < 0.02) in WB than in NB tissues, respectively. The level of miR-375 was not different between WB and NB muscles. The specific LDH isoenzyme activity that converted lactate to pyruvate was 1.8-fold lower in WB compared to NB tissues (P < 0.01). The level of MCT1 mRNA was 2.3-fold higher in WB than those in NB muscles (P < 0.02). However, this upregulation was not observed with MCT1 protein expression levels. The expression levels of MCT4 mRNA and protein were elevated 2.8-fold (P < 0.02) and 3.5-fold (P < 0.004) in WB compared to NB tissues, respectively. Our current findings suggest the potential roles of LDHB and MCT4 on lactate metabolism and provide a unique molecular elucidation for altered lactate homeostasis in WB muscles of broilers.
机译:由于肉质的降低,木制乳房(WB)导致肉鸡产业的显着损失。虽然WB的病因未知,但它被认为与局部缺氧和骨骼肌中的乳酸水平降低,表明存在改变的WB中的乳酸乳酸代谢。我们假设控制乳酸代谢的主要信号分子的表达水平,包括乳酸脱氢酶(LDHA和LDHB)和单羧酸盐转运蛋白(MCT1和MCT4),在WB中被改变。因此,与正常乳腺(Nb)肌肉相比,该研究的目的是评估WB中LDHA,LDHB,MCT1和MCT4的mRNA和蛋白质水平的变化。研究了Nb和Wb肌肉中LDH酶活性的生化分析。还研究了MicroRNA375(miR-375)表达,已知与人细胞中的LDHB蛋白表达与LDHB蛋白表达相反。在WB组织中,LDHA mRNA的水平比NB组织中的17倍(P <0.0001)。然而,在Wb和Nb组织中,LDHA蛋白水平相似。相比之下,在WB的WB中,LDHB mRNA和蛋白质的水平分别比在Nb组织中高出(P <0.002)和13.6倍(P <0.02)。 WB和NB肌肉之间的miR-375水平在不同。与Nb组织相比,将乳酸转化为丙酮酸与丙酮酸丙酯的特异性LDH同工酶活性为1.8倍(P <0.01)。 WB的MCT1 mRNA水平比NB肌肉(P <0.02)高2.3倍。然而,使用MCT1蛋白表达水平未观察到这种上调。与Nb组织分别与Nb组织分别在WB中升高了MCT4 mRNA和蛋白质的表达水平,升高了2.8倍(P <0.02)和3.5倍(P <0.004)。我们目前的研究结果表明LDHB和MCT4对乳酸乳酸代谢的潜在作用,并为肉鸡的WB肌肉中改变乳酸稳态提供了独特的分子阐明。

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