Sun Haipeng, Lu Gang, Ren Shuxun, Chen Jaunian, Wang Yibin
Division of Molecular Medicine, Department of Anesthesiology, Molecular Biology Institute, Cardiovascular Research Laboratories, David Geffen School of Medicine, CSH, Room BH 569, 650 Charles E. Young Drive, Los Angeles, CA 90095, USA.
Pediatr Cardiol. 2011 Mar;32(3):305-10. doi: 10.1007/s00246-010-9856-9. Epub 2011 Jan 7.
Genetic defects in amino acid metabolism are major causes of newborn diseases that often lead to abnormal development and function of the central nervous system. Their direct impact on cardiac development and function has rarely been investigated. Recently, the authors have established that a mitochondrial targeted 2C-type ser/thr protein phosphatase, PP2Cm, is the endogenous phosphatase of the branched-chain alpha keto acid-dehydrogenase complex (BCKD) and functions as a key regulator in branched-chain amino acid catabolism and homeostasis. Genetic inactivation of PP2Cm in mice leads to significant elevation in plasma concentrations of branched-chain amino acids and branched-chain keto acids at levels similar to those associated with intermediate mild forms of maple syrup urine disease. In addition to neuronal tissues, PP2Cm is highly expressed in cardiac muscle, and its expression is diminished in a heart under pathologic stresses. Whereas phenotypic features of heart failure are seen in PP2Cm-deficient zebra fish embryos, cardiac function in PP2Cm-null mice is compromised at a young age and deteriorates faster by mechanical overload. These observations suggest that the catabolism of branched-chain amino acids also has physiologic significance in maintaining normal cardiac function. Defects in PP2Cm-mediated catabolism of branched-chain amino acids can be a potential novel mechanism not only for maple syrup urine disease but also for congenital heart diseases and heart failure.
氨基酸代谢中的遗传缺陷是新生儿疾病的主要原因,这些疾病常导致中枢神经系统发育和功能异常。其对心脏发育和功能的直接影响鲜有研究。最近,作者发现线粒体靶向的2C型丝氨酸/苏氨酸蛋白磷酸酶PP2Cm是支链α-酮酸脱氢酶复合体(BCKD)的内源性磷酸酶,在支链氨基酸分解代谢和稳态中起关键调节作用。小鼠中PP2Cm的基因失活导致血浆中支链氨基酸和支链酮酸浓度显著升高,其水平与中度枫糖尿症相似。除神经组织外,PP2Cm在心肌中高度表达,在病理应激下心脏中其表达降低。虽然在PP2Cm缺陷的斑马鱼胚胎中可见心力衰竭的表型特征,但PP2Cm基因敲除小鼠的心脏功能在年轻时就受到损害,且在机械负荷下恶化更快。这些观察结果表明,支链氨基酸的分解代谢在维持正常心脏功能中也具有生理意义。PP2Cm介导的支链氨基酸分解代谢缺陷不仅可能是枫糖尿症的潜在新机制,也可能是先天性心脏病和心力衰竭的潜在新机制。