Department of Pharmacology and Toxicology, Michigan State University, East Lansing, MI, USA.
Eur J Neurosci. 2010 Nov;32(10):1632-45. doi: 10.1111/j.1460-9568.2010.07449.x. Epub 2010 Oct 19.
Microvillous cells of the main olfactory epithelium have been described variously as primary olfactory neurons, secondary chemosensory cells or non-sensory cells. Here we generated an IP3R3(tm1(tauGFP)) mouse in which the coding region for a fusion protein of tau and green fluorescent protein replaces the first exon of the Itpr3 gene. We provide immunohistochemical and functional characterization of the cells expressing IP3 receptor type 3 in the olfactory epithelium. These cells bear microvilli at their apex, and we therefore termed them IP3R3 MV cells. The cell body of these IP3R3 MV cells lies in the upper third of the main olfactory epithelium; a long thick basal process projects towards the base of the epithelium without penetrating the basal lamina. Retrograde labeling and unilateral bulbectomy corroborated that these IP3R3 MV cells do not extend axons to the olfactory bulb and therefore are not olfactory sensory neurons. The immunohistochemical features of IP3R3 MV cells varied, suggesting either developmental stages or the existence of subsets of these cells. Thus, for example, subsets of the IP3R3 MV cells make contact with substance P fibers or express the purinergic receptor P2X3. In addition, in recordings of intracellular calcium, these cells respond to ATP and substance P as well as to a variety of odors. The characterization of IP3R3 MV cells as non-neuronal chemoresponsive cells helps to explain the differing descriptions of microvillous cells in the literature.
主嗅上皮的微绒毛细胞被描述为初级嗅觉神经元、次级化学感觉细胞或非感觉细胞。在这里,我们生成了一种 IP3R3(tm1(tauGFP)) 小鼠,其中 tau 和绿色荧光蛋白融合蛋白的编码区取代了 Itpr3 基因的第一个外显子。我们对嗅上皮中表达 IP3 受体 3 的细胞进行了免疫组织化学和功能表征。这些细胞在其顶端具有微绒毛,因此我们将它们命名为 IP3R3 MV 细胞。这些 IP3R3 MV 细胞的细胞体位于主嗅上皮的上三分之一;一个长而粗的基底突伸向上皮的基部,但不穿透基底膜。逆行标记和单侧嗅球切除术证实,这些 IP3R3 MV 细胞不向嗅球延伸轴突,因此不是嗅觉感觉神经元。IP3R3 MV 细胞的免疫组织化学特征不同,这表明这些细胞处于不同的发育阶段或存在亚群。例如,IP3R3 MV 细胞的亚群与 P 物质纤维接触或表达嘌呤能受体 P2X3。此外,在细胞内钙记录中,这些细胞对 ATP 和 P 物质以及各种气味有反应。将 IP3R3 MV 细胞鉴定为非神经元化学感受细胞有助于解释文献中对微绒毛细胞的不同描述。