Expression of Coxsackie-Adenovirus receptor (CAR) in the developing mouse olfactory system.

Journal of Neurocytology Pub Date : 2005-09-01 Epub Date: 2006-07-13 DOI:10.1007/s11068-005-8359-8
Giri Venkatraman, Maik Behrens, Martina Pyrski, Frank L Margolis
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引用次数: 11

Abstract

Interest in manipulating gene expression in olfactory sensory neurons (OSNs) has led to the use of adenoviruses (AdV) as gene delivery vectors. OSNs are the first order neurons in the olfactory system and the initial site of odor detection. They are highly susceptible to adenovirus infection although the mechanism is poorly understood. The Coxsackie-Adenovirus receptor (CAR) and members of the integrin family have been implicated in the process of AdV infection in various systems. Multiple serotypes of AdV efficiently bind to the CAR, leading to entry and infection of the host cell by a mechanism that can also involve integrins. Cell lines that do not express CAR are relatively resistant, but not completely immune to AdV infection, suggesting that other mechanisms participate in mediating AdV attachment and entry. Using in situ hybridization and western blot analyses, we show that OSNs and olfactory bulbs (OB) of mice express abundant CAR mRNA at embryonic and neonatal stages, with progressive diminution during postnatal development. By contrast to the olfactory epithelium (OE), CAR mRNA is still present in the adult mouse OB. Furthermore, despite a similar postnatal decline, CAR protein expression in the OE and OB of mice continues into adulthood. Our results suggest that the robust AdV infection observed in the postnatal olfactory system is mediated by CAR and that expression of even small amounts of CAR protein as seen in the adult rodent, permits efficient AdV infection and entry. CAR is an immunoglobulin domain-containing protein that bears homology to cell-adhesion molecules suggesting the possibility that it may participate in organization of the developing olfactory system.

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柯萨奇-腺病毒受体(CAR)在发育中的小鼠嗅觉系统中的表达。
对操纵嗅觉感觉神经元(OSNs)基因表达的兴趣导致了腺病毒(AdV)作为基因传递载体的使用。嗅觉神经网络是嗅觉系统的一级神经元,也是嗅觉系统的初始检测部位。他们对腺病毒感染非常敏感,尽管其机制尚不清楚。柯萨奇-腺病毒受体(CAR)和整合素家族成员参与了各种系统的AdV感染过程。多种血清型AdV有效地与CAR结合,通过一种也可能涉及整合素的机制进入和感染宿主细胞。不表达CAR的细胞系对AdV感染具有相对抗性,但并非完全免疫,这表明有其他机制参与介导AdV的附着和进入。通过原位杂交和western blot分析,我们发现小鼠的osn和嗅球(OB)在胚胎和新生儿阶段表达丰富的CAR mRNA,在出生后发育过程中逐渐减少。与嗅上皮(OE)相比,CAR mRNA在成年小鼠OB中仍然存在。此外,尽管出生后出现类似的下降,但CAR蛋白在小鼠OE和OB中的表达持续到成年。我们的研究结果表明,在出生后的嗅觉系统中观察到的强大的AdV感染是由CAR介导的,并且在成年啮齿动物中观察到的即使少量CAR蛋白的表达,也允许AdV有效地感染和进入。CAR是一种含有免疫球蛋白结构域的蛋白,与细胞粘附分子具有同源性,这表明它可能参与发育中的嗅觉系统的组织。
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