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在骨骼肌成熟过程中,主要的柯萨奇病毒和腺病毒受体的表达下调,并限制了腺病毒介导的基因传递至肌肉细胞的效率。

Expression of the primary coxsackie and adenovirus receptor is downregulated during skeletal muscle maturation and limits the efficacy of adenovirus-mediated gene delivery to muscle cells.

作者信息

Nalbantoglu J, Pari G, Karpati G, Holland P C

机构信息

Department of Neurology and Neurosurgery, McGill University, and Montreal Neurological Institute, Quebec, Canada.

出版信息

Hum Gene Ther. 1999 Apr 10;10(6):1009-19. doi: 10.1089/10430349950018409.

Abstract

Skeletal muscle fibers are infected efficiently by adenoviral vectors only in neonatal animals. This lack of tropism for mature skeletal muscle may be partly due to inefficient binding of adenoviral particles to the cell surface. We evaluated in developing mouse muscle the expression levels of two high-affinity receptors for adenovirus, MHC class I and the coxsackie and adenovirus receptor (CAR). The moderate levels of MHC class I transcripts that were detected in quadriceps, gastrocnemius, and heart muscle did not vary between postnatal day 3 and day 60 adult tissue. A low level of CAR expression was detected on postnatal day 3 in quadriceps and gastrocnemius muscles, but CAR expression was barely detectable in adult skeletal muscle even by reverse transcriptase-polymerase chain reaction. In contrast, CAR transcripts were moderately abundant at all stages of heart muscle development. Ectopic expression of CAR in C2C12 mouse myoblast cells increased their transducibility by adenovirus at all multiplicities of infection (MOIs) tested as measured by lacZ reporter gene activity following AVCMVlacZ infection, with an 80-fold difference between CAR-expressing cells and control C2C12 cells at an MOI of 50. Primary myoblasts ectopically expressing CAR were injected into muscles of syngeneic hosts; following incorporation of the exogenous myoblasts into host myofibers, an increased transducibility of adult muscle fibers by AVCMVlacZ was observed in the host. Expression of the lacZ reporter gene in host myofibers coincided with CAR immunoreactivity. Furthermore, sarcolemmal CAR expression was markedly increased in regenerating muscle fibers of the dystrophic mdx mouse, fibers that are susceptible to adenovirus transduction. These analyses show that CAR expression by skeletal muscle correlates with its susceptibility to adenovirus transduction, and that forced CAR expression in mature myofibers dramatically increases their susceptibility to adenovirus transduction.

摘要

仅在新生动物中,腺病毒载体可有效感染骨骼肌纤维。对成熟骨骼肌缺乏嗜性可能部分归因于腺病毒颗粒与细胞表面的低效结合。我们评估了发育中小鼠肌肉中腺病毒的两种高亲和力受体,即主要组织相容性复合体I类分子(MHC class I)和柯萨奇病毒与腺病毒受体(CAR)的表达水平。在股四头肌、腓肠肌和心肌中检测到的中等水平的MHC class I转录本在出生后第3天和60日龄的成体组织之间没有变化。在出生后第3天,在股四头肌和腓肠肌中检测到低水平的CAR表达,但即使通过逆转录酶-聚合酶链反应,在成体骨骼肌中也几乎检测不到CAR表达。相比之下,CAR转录本在心肌发育的所有阶段都中度丰富。通过腺病毒载体CMV-lacZ(AVCMVlacZ)感染后,以lacZ报告基因活性衡量,在所有测试的感染复数(MOI)下,CAR在C2C12小鼠成肌细胞中的异位表达均增加了它们对腺病毒的转导能力,在MOI为50时,表达CAR的细胞与对照C2C12细胞之间的差异高达80倍。将异位表达CAR的原代成肌细胞注射到同基因宿主的肌肉中;在外源成肌细胞整合到宿主肌纤维后,观察到宿主中成年肌纤维对AVCMVlacZ的转导能力增加。宿主肌纤维中lacZ报告基因的表达与CAR免疫反应性一致。此外,在营养不良的mdx小鼠的再生肌纤维中,肌膜CAR表达明显增加,这些纤维易受腺病毒转导。这些分析表明,骨骼肌中CAR的表达与其对腺病毒转导的敏感性相关,并且在成熟肌纤维中强制表达CAR会显著增加它们对腺病毒转导的敏感性。

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