Poss K D, Thomas M J, Ebralidze A K, O'Dell T J, Tonegawa S
Howard Hughes Medical Institute, Massachusetts Institute of Technology, Cambridge 02139, USA.
Neuron. 1995 Oct;15(4):867-73. doi: 10.1016/0896-6273(95)90177-9.
We have generated mice deficient in HO-2, the major cerebral isoform of heme oxygenase, in order to assess the potential role of carbon monoxide as a retrograde messenger in hippocampal LTP. Cerebral HO catalytic activity was markedly reduced in the HO-2 mutant mice, yet no differences were found between wild types and mutants in gross neuroanatomical structure, in basal hippocampal synaptic transmission, or in the amount of potentiation produced by various LTP induction protocols. Furthermore, zinc protoporphyrin IX, an inhibitor of HO, had nearly identical inhibitory effects on LTP in wild-type and HO-2 mutant hippocampal slices. Our data indicate that carbon monoxide produced endogenously by HO is unlikely to be a neuromodulator required for LTP in the hippocampus.
我们培育出了血红素加氧酶主要脑型同工酶HO-2缺陷的小鼠,以评估一氧化碳作为海马长时程增强(LTP)中逆行信使的潜在作用。HO-2突变小鼠的脑HO催化活性显著降低,但在大体神经解剖结构、基础海马突触传递或各种LTP诱导方案产生的增强量方面,野生型和突变体之间未发现差异。此外,HO抑制剂锌原卟啉IX对野生型和HO-2突变型海马切片中的LTP具有几乎相同的抑制作用。我们的数据表明,HO内源性产生的一氧化碳不太可能是海马LTP所需的神经调节剂。