Paventi Gianluca, Pizzuto Roberto, Passarella Salvatore
Department of Medicine and Health Sciences "Vincenzo Tiberio", University of Molise, via De Sanctis, 86100 Campobasso, Italy.
Department of Medicine and Health Sciences "Vincenzo Tiberio", University of Molise, via De Sanctis, 86100 Campobasso, Italy.
Biochem Biophys Res Commun. 2017 Jul 22;489(2):255-261. doi: 10.1016/j.bbrc.2017.05.154. Epub 2017 May 28.
Although pig represents a model species in biomedical research including studies dealing with liver patho-physiology, some aspects of liver metabolism need to be addressed. In particular, whether and how pig mitochondria can metabolize l-lactate remains to be established. We show here that pig liver mitochondria (PLM) possess their own l-lactate dehydrogenase (mL-LDH). This was shown both via immunological analysis and by assaying photometrically the L-LDH reaction in solubilised PLM. The mL-LDH reaction shows hyperbolic dependence on the substrate concentration, it is inhibited by oxamate and proves to differ from the cytosolic activity (cL-LDH), as revealed by the difference found in both pH profiles and temperature dependence of m- and cL-LDH. Titration experiments with digitonin show that mL-LDH is restricted in mitochondrial inner compartment. In agreement with the above findings, three genes in Sus scrofa genome encoded for L-LDH subunits which are predicted to have mitochondrial localization, as investigated by Target P 1.1 and PredSL analysis.
尽管猪是生物医学研究中的一种模式物种,包括涉及肝脏病理生理学的研究,但肝脏代谢的某些方面仍需探讨。特别是,猪线粒体是否以及如何代谢L-乳酸仍有待确定。我们在此表明,猪肝线粒体(PLM)拥有自身的L-乳酸脱氢酶(mL-LDH)。这通过免疫分析以及通过光度法测定溶解的PLM中的L-LDH反应得以证明。mL-LDH反应对底物浓度呈双曲线依赖性,它被草氨酸抑制,并且如m-LDH和c-LDH在pH曲线和温度依赖性方面的差异所揭示的那样,证明与胞质活性(cL-LDH)不同。用洋地黄皂苷进行的滴定实验表明,mL-LDH局限于线粒体内腔。与上述发现一致,通过Target P 1.1和PredSL分析研究发现,野猪基因组中的三个基因编码L-LDH亚基,预计这些亚基具有线粒体定位。