González Juan D, Silva-Marrero Jonás I, Metón Isidoro, Caballero-Solares Albert, Viegas Ivan, Fernández Felipe, Miñarro Montserrat, Fàbregas Anna, Ticó Josep R, Jones John G, Baanante Isabel V
Mar Biotechnol (NY). 2016 Feb;18(1):85-97. doi: 10.1007/s10126-015-9670-8.
Alanine aminotransferase (ALT) catalyses a transamination reaction that links carbohydrate and amino acid metabolism. In this study, we examined the effect of silencing cytosolic ALT (cALT) expression on the hepatic metabolism in Sparus aurata. A number of siRNA and shRNA designed to down-regulate cALT expression were validated in HEK-293 cells transfected with plasmids expressing S. aurata cALT or mitochondrial ALT (mALT) isoforms: ALT silencing significantly decreased the expression levels of S. aurata mRNA cALT1 to 62% (siRNA) and 48% (shRNA) of the values observed in control cells. The effect of cALT silencing was analysed in the liver of S. aurata 72 h after intraperitoneal injection of chitosan-tripolyphosphate (TPP) nanoparticles complexed with a plasmid encoding a shRNA to down-regulate cALT expression (pCpG-si1sh1). In fish fed diets with different ratio of protein to carbohydrate and treated with chitosan-TPP-pCpG-si1sh1, cALT1 and cALT2 mRNA levels significantly decreased irrespective of the diet. Consistently, ALT activity decreased in liver of treated animals. In the liver of S. aurata treated with chitosan-TPP-pCpG-si1sh1 nanoparticles, down-regulation of cALT expression increased the activity of key enzymes in glycolysis (6-phosphofructo-1-kinase and pyruvate kinase) and protein metabolism (glutamate dehydrogenase). Besides showing for the first time that administration of chitosan-TPP-pCpG-si1sh1 nanoparticles silences hepatic cALT expression in vivo, our data support that down-regulation of cALT could improve the use of dietary carbohydrates to obtain energy and spare protein catabolism.
丙氨酸转氨酶(ALT)催化一种连接碳水化合物和氨基酸代谢的转氨反应。在本研究中,我们检测了沉默胞质ALT(cALT)表达对金头鲷肝脏代谢的影响。一些设计用于下调cALT表达的小干扰RNA(siRNA)和短发夹RNA(shRNA)在转染了表达金头鲷cALT或线粒体ALT(mALT)同工型质粒的人胚肾293(HEK - 293)细胞中得到验证:ALT沉默显著降低了金头鲷mRNA cALT1的表达水平,降至对照细胞中观察值的62%(siRNA)和48%(shRNA)。在腹腔注射与编码shRNA的质粒复合以下调cALT表达的壳聚糖 - 三聚磷酸钠(TPP)纳米颗粒72小时后,分析了cALT沉默对金头鲷肝脏的影响(pCpG - si1sh1)。在用壳聚糖 - TPP - pCpG - si1sh1处理且喂食不同蛋白质与碳水化合物比例饲料的鱼类中,无论饲料如何,cALT1和cALT2 mRNA水平均显著降低。一致地,处理动物肝脏中的ALT活性降低。在用壳聚糖 - TPP - pCpG - si1sh1纳米颗粒处理的金头鲷肝脏中,cALT表达的下调增加了糖酵解关键酶(6 - 磷酸果糖 - 1 - 激酶和丙酮酸激酶)和蛋白质代谢关键酶(谷氨酸脱氢酶)的活性。除了首次表明给予壳聚糖 - TPP - pCpG - si1sh1纳米颗粒可在体内沉默肝脏cALT表达外,我们的数据支持下调cALT可改善对膳食碳水化合物的利用以获取能量并节省蛋白质分解代谢。