Cozzi Andrea, Cipriani Giulia, Fossati Silvia, Faraco Giuseppe, Formentini Laura, Min Wookee, Cortes Ulrich, Wang Zhao-Qi, Moroni Flavio, Chiarugi Alberto
Department of Pharmacology, University of Florence, Firenze, Italy.
J Cereb Blood Flow Metab. 2006 May;26(5):684-95. doi: 10.1038/sj.jcbfm.9600222.
Poly(ADP-ribose) (PAR) is a polymer synthesized by poly(ADP-ribose) polymerases (PARPs) and metabolized into free adenosine diphosphate (ADP)-ribose units by poly(ADP-ribose) glycohydrolase (PARG). Perturbations in PAR synthesis have been shown to play a key role in brain disorders including postischemic brain damage. A single parg gene but two PARG isoforms (110 and 60 kDa) have been detected in mouse cells. Complete suppression of parg gene causes early embryonic lethality, whereas mice selectively lacking the 110 kDa PARG isoform (PARG(110)(-/-)) develop normally. We used PARG(110)(-/-) mice to evaluate the importance of PAR catabolism to postischemic brain damage. Poly(ADP-ribose) contents were higher in the brain tissue of PARG(110)(-/-) than PARG(110)(+/+) mice, both under basal conditions and after PARP activation. Distal middle cerebral artery occlusion caused higher increase of brain PAR levels and larger infarct volumes in PARG(110)(-/-) mice than in wild-type counterparts. Of note, the brain of PARG(110)(-/-) mice showed reduced heat-shock protein (HSP)-70 and increased cyclooxygenase-2 expression under both control and ischemic conditions. No differences were detected in brain expression/activation of procaspase-3, PARP-1, Akt, HSP-25 and interleukin-1beta. Our findings show that PAR accumulation worsens ischemic brain injury, and highlight the therapeutic potential of strategies capable of maintaining PAR homeostasis.
聚(ADP - 核糖)(PAR)是一种由聚(ADP - 核糖)聚合酶(PARP)合成的聚合物,并由聚(ADP - 核糖)糖苷水解酶(PARG)代谢为游离的二磷酸腺苷(ADP) - 核糖单元。PAR合成的扰动已被证明在包括缺血性脑损伤在内的脑部疾病中起关键作用。在小鼠细胞中已检测到单个parg基因,但有两种PARG同工型(110和60 kDa)。parg基因的完全抑制会导致早期胚胎致死,而选择性缺乏110 kDa PARG同工型(PARG(110)(-/-))的小鼠发育正常。我们使用PARG(110)(-/-)小鼠来评估PAR分解代谢对缺血性脑损伤的重要性。在基础条件下和PARP激活后,PARG(110)(-/-)小鼠脑组织中的聚(ADP - 核糖)含量均高于PARG(110)(+/+)小鼠。大脑中动脉远端闭塞导致PARG(110)(-/-)小鼠的脑PAR水平升高幅度更大,梗死体积比野生型小鼠更大。值得注意的是,在对照和缺血条件下,PARG(110)(-/-)小鼠的大脑中热休克蛋白(HSP) - 70表达降低,环氧合酶 - 2表达增加。在procaspase - 3、PARP - 1、Akt、HSP - 25和白细胞介素 - 1β的脑表达/激活方面未检测到差异。我们的研究结果表明,PAR积累会加重缺血性脑损伤,并突出了能够维持PAR稳态的策略的治疗潜力。