Yvone Griselda M, Zhao-Fleming Hannah H, Udeochu Joe C, Chavez-Martinez Carmine L, Wang Austin, Hirose-Ikeda Megumi, Phelps Patricia E
Department of Integrative Biology and Physiology, UCLA, Terasaki Life Sciences Building, 610 Charles Young Dr. E, Los Angeles, CA, 90095-7239, USA.
Eur J Neurosci. 2017 Mar;45(5):733-747. doi: 10.1111/ejn.13520. Epub 2017 Feb 10.
The Reelin-signaling pathway is essential for correct neuronal positioning within the central nervous system. Mutant mice with a deletion of Reelin, its lipoprotein receptors, or its intracellular adaptor protein Disabled-1 (Dab1), exhibit nociceptive abnormalities: thermal (heat) hyperalgesia and reduced mechanical sensitivity. To determine dorsal horn alterations associated with these nociceptive abnormalities, we first characterized the correctly positioned Dab1 neurons in wild-type and mispositioned neurons in Reelin-signaling pathway mutant lumbar spinal cord. Using immunofluorescence, we found that 70% of the numerous Dab1 neurons in Reln laminae I-II and 67% of those in the lateral reticulated area and lateral spinal nucleus (LSN) co-express the LIM-homeobox transcription factor 1 beta (Lmx1b), an excitatory glutamatergic neuron marker. Evidence of Dab1- and Dab1-Lmx1b neuronal positioning errors was found within the isolectin B4 terminal region of Reln lamina IIinner and in the lateral reticulated area and LSN, where about 50% of the Dab1-Lmx1b neurons are missing. Importantly, Dab1-Lmx1b neurons in laminae I-II and the lateral reticulated area express Fos after noxious thermal or mechanical stimulation and thus participate in these circuits. In another pain relevant locus - the lateral cervical nucleus (LCN), we also found about a 50% loss of Dab1-Lmx1b neurons in Reln mice. We suggest that extensively mispositioned Dab1 projection neurons in the lateral reticulated area, LSN, and LCN and the more subtle positioning errors of Dab1 interneurons in laminae I-II contribute to the abnormalities in pain responses found in Reelin-signaling pathway mutants.
Reelin信号通路对于中枢神经系统内神经元的正确定位至关重要。缺失Reelin、其脂蛋白受体或其细胞内衔接蛋白Disabled-1(Dab1)的突变小鼠表现出伤害性异常:热(热)痛觉过敏和机械敏感性降低。为了确定与这些伤害性异常相关的背角改变,我们首先对野生型中位置正确的Dab1神经元以及Reelin信号通路突变体腰脊髓中位置错误的神经元进行了表征。使用免疫荧光法,我们发现Reln I-II层中众多Dab1神经元的70%以及外侧网状区和外侧脊髓核(LSN)中67%的Dab1神经元共表达LIM同源盒转录因子1β(Lmx1b),这是一种兴奋性谷氨酸能神经元标记物。在Reln II内板层的异凝集素B4终末区域以及外侧网状区和LSN中发现了Dab1和Dab1-Lmx1b神经元定位错误的证据,其中约50%的Dab1-Lmx1b神经元缺失。重要的是,I-II层和外侧网状区的Dab1-Lmx1b神经元在有害热刺激或机械刺激后表达Fos,因此参与这些神经回路。在另一个与疼痛相关的位点——外侧颈核(LCN),我们还发现Reln小鼠中Dab1-Lmx1b神经元减少了约50%。我们认为,外侧网状区、LSN和LCN中大量位置错误的Dab1投射神经元以及I-II层中Dab1中间神经元更细微的定位错误导致了Reelin信号通路突变体中发现的疼痛反应异常。