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鹿茸中轴突生长促进因子的基因表达。

Gene expression of axon growth promoting factors in the deer antler.

机构信息

Experimental Neurology Unit, Hospital Nacional de Parapléjicos (SESCAM), Toledo, Spain.

出版信息

PLoS One. 2010 Dec 20;5(12):e15706. doi: 10.1371/journal.pone.0015706.

Abstract

The annual regeneration cycle of deer (Cervidae, Artiodactyla) antlers represents a unique model of epimorphic regeneration and rapid growth in adult mammals. Regenerating antlers are innervated by trigeminal sensory axons growing through the velvet, the modified form of skin that envelopes the antler, at elongation velocities that reach one centimetre per day in the common deer (Cervus elaphus). Several axon growth promoters like NT-3, NGF or IGF-1 have been described in the antler. To increase the knowledge on the axon growth environment, we have combined different gene-expression techniques to identify and characterize the expression of promoting molecules not previously described in the antler velvet. Cross-species microarray analyses of deer samples on human arrays allowed us to build up a list of 90 extracellular or membrane molecules involved in axon growth that were potentially being expressed in the antler. Fifteen of these genes were analysed using PCR and sequencing techniques to confirm their expression in the velvet and to compare it with the expression in other antler and skin samples. Expression of 8 axon growth promoters was confirmed in the velvet, 5 of them not previously described in the antler. In conclusion, our work shows that antler velvet provides growing axons with a variety of promoters of axon growth, sharing many of them with deer's normal and pedicle skin.

摘要

鹿(偶蹄目,鹿科)鹿角的年度再生周期代表了成年哺乳动物中一种独特的后生模式和快速生长的模式。再生的鹿角由三叉神经感觉轴突支配,这些轴突通过鹿茸,即包裹鹿角的皮肤的特化形式,以每天一厘米的速度生长。在普通鹿(Cervus elaphus)中,已经描述了几种轴突生长促进剂,如 NT-3、NGF 或 IGF-1。为了增加对轴突生长环境的了解,我们结合了不同的基因表达技术,以鉴定和描述以前在鹿茸中未描述过的促进分子的表达。对人类基因芯片上的鹿样本进行的跨物种基因芯片分析,使我们能够构建一个涉及轴突生长的 90 种细胞外或膜分子的列表,这些分子可能在鹿角中表达。使用 PCR 和测序技术分析了其中的 15 个基因,以确认它们在鹿茸中的表达,并将其与其他鹿角和皮肤样本中的表达进行比较。8 种轴突生长促进剂的表达在鹿茸中得到了证实,其中 5 种以前在鹿角中没有描述过。总之,我们的工作表明,鹿茸为生长中的轴突提供了多种轴突生长促进剂,其中许多与鹿的正常皮肤和蹄部皮肤共享。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b07d/3004953/63f6edb56dbf/pone.0015706.g001.jpg

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