Guo Chao, Qiu Hai-Yan, Shi Ming, Huang Ying, Johnson Randy L, Rubinstein Marcelo, Chen Sheng-Di, Ding Yu-Qiang
Institute of Neuroscience, Key Laboratory of Neurobiology, Chinese Academy of Sciences, Shanghai 200031, China.
J Neurosci. 2008 Dec 24;28(52):14097-106. doi: 10.1523/JNEUROSCI.3267-08.2008.
The LIM homeodomain transcription factor Lmx1b has been suggested to be required for the differentiation of midbrain dopaminergic (mDA) neurons. However, whether the loss of mDA neurons in Lmx1b(-/-) mice is due to its intrinsic role in the mDA lineage or to a consequence of the malformations caused by the earlier mid/hindbrain patterning defects remains to be clarified. We report here that Lmx1b expression in mDA neurons is dispensable for their differentiation and maintenance, and the loss of mDA neurons in Lmx1b(-/-) mice is due to the disruption of inductive activity of the isthmic organizer (IsO) in the absence of Lmx1b at the mid/hindbrain boundary (MHB). We found that mDA neurons revealed by tyrosine hydroxylase (TH), Pitx3, Nurr1, and dopamine transporter were indistinguishable from wild-type controls during embryonic development as well as in adulthood in TH-Cre;Lmx1b(flox/-) and Dat(Cre/+);Lmx1b(flox/-) mice, in which Lmx1b was selectively deleted in differentiating mDA neurons. In addition, mDA neurons were recovered in Lmx1b(-/-) mice, when IsO activity was restored by Wnt1-Lmx1b transgene at MHB. The restored IsO activity was evidenced by apparently normal tectum and cerebellum and recurrence of expression of Fgf8 and Wnt1 at MHB in Wnt1(Lmx1b);Lmx1b(-/-). Furthermore, when Lmx1b was deleted in the whole brain after the formation of IsO by Nestin-Cre, mDA neurons were normal, whereas serotonergic neurons displayed defective development phenocopying what observed in Lmx1b(-/-) mice. Thus, our results indicate that the inductive activity of IsO is essential, but Lmx1b expression in mDA neurons is dispensable for their differentiation and maintenance.
LIM 同源结构域转录因子 Lmx1b 被认为是中脑多巴胺能(mDA)神经元分化所必需的。然而,Lmx1b(-/-) 小鼠中 mDA 神经元的缺失是由于其在 mDA 谱系中的内在作用,还是由于早期中脑/后脑模式缺陷导致的畸形后果,仍有待阐明。我们在此报告,mDA 神经元中 Lmx1b 的表达对于其分化和维持并非必需,Lmx1b(-/-) 小鼠中 mDA 神经元的缺失是由于在中脑/后脑边界(MHB)缺乏 Lmx1b 时,峡部组织者(IsO)的诱导活性受到破坏。我们发现,在胚胎发育期间以及成年期,酪氨酸羟化酶(TH)、Pitx3、Nurr1 和多巴胺转运体所揭示的 mDA 神经元在 TH-Cre;Lmx1b(flox/-) 和 Dat(Cre/+);Lmx1b(flox/-) 小鼠中与野生型对照并无差异,在这些小鼠中,Lmx1b 在分化的 mDA 神经元中被选择性删除。此外,当通过 Wnt1-Lmx1b 转基因在 MHB 恢复 IsO 活性时,Lmx1b(-/-) 小鼠中的 mDA 神经元得以恢复。Wnt1(Lmx1b);Lmx1b(-/-) 小鼠中,明显正常的顶盖和小脑以及 MHB 处 Fgf8 和 Wnt1 表达的重现证明了 IsO 活性的恢复。此外,当通过 Nestin-Cre 在 IsO 形成后在全脑删除 Lmx1b 时,mDA 神经元正常,而血清素能神经元表现出发育缺陷,模拟了在 Lmx1b(-/-) 小鼠中观察到的情况。因此,我们的结果表明,IsO 的诱导活性至关重要,但 mDA 神经元中 Lmx1b 的表达对于其分化和维持并非必需。