Chaparro O, Yu W H, Shaw P A
Department of Cell Biology and Anatomy, Mount Sinai School of Medicine of the City University of New York, NY 10029, USA.
Dev Neurosci. 1998;20(1):65-73. doi: 10.1159/000017300.
The rat submandibular gland is innervated by both sympathetic and parasympathetic branches of the autonomic nervous system which, in turn, regulate the secretory function of the gland. Parasympathetic innervation of rat submandibular glands is present at birth; in contrast, sympathetic innervation reaches the glands by postnatal day 5. Isoproterenol (IPR), a beta-adrenoreceptor agonist, induces hypertrophic and hyperplastic enlargement of rat salivary glands, and induces the expression of a number of genes, including cystatin S (Cys S), a member of family 2 of the cysteine proteinase inhibitor superfamily. Cys S gene expression is tissue specific, cell type specific, occurs temporally during normal development and is not observed in adult animals unless stimulated by IPR. In addition, sympathectomy of adult rat submandibular glands reduced IPR-induced expression of the Cys S gene. This paper reports experiments analyzing the participation of the sympathetic branch of the autonomic nervous system in IPR-induced expression of the cystatin S gene during early development of the submandibular gland. The rat Cys S gene could be induced by IPR by day 3, and the level of Cys S mRNA remained constant until 8 days at which time a dramatic IPR induction of Cys S mRNA was observed. This statistically significant increase in Cys S mRNA at 8 days was diminished, but not completely suppressed, upon sympathectomy of 1-day-old animals. These data indicate that an intact sympathetic innervation is not a requisite for IPR-induced Cys S gene expression in developing submandibular glands; however, sympathetic innervation is required for the full IPR response of the Cys S gene in developing submandibular glands. The developmental experiments presented in this paper indicate that factor(s) coming from the sympathetic nervous system participate in IPR-induced expression of the Cys S gene in rat submandibular glands.
大鼠下颌下腺受自主神经系统的交感和副交感分支支配,而这又反过来调节该腺体的分泌功能。大鼠下颌下腺的副交感神经支配在出生时就已存在;相比之下,交感神经支配在出生后第5天才到达腺体。异丙肾上腺素(IPR)是一种β-肾上腺素能受体激动剂,可诱导大鼠唾液腺肥大和增生,并诱导包括半胱氨酸蛋白酶抑制剂超家族第2家族成员胱抑素S(Cys S)在内的多种基因表达。Cys S基因表达具有组织特异性和细胞类型特异性,在正常发育过程中随时间出现,在成年动物中除非受到IPR刺激否则不会观察到。此外,成年大鼠下颌下腺的交感神经切除术降低了IPR诱导的Cys S基因表达。本文报告了一些实验,分析自主神经系统的交感分支在颌下腺早期发育过程中对IPR诱导的胱抑素S基因表达的参与情况。到第3天,大鼠Cys S基因可被IPR诱导,Cys S mRNA水平在8天前保持恒定,此时观察到Cys S mRNA有显著的IPR诱导。在对1日龄动物进行交感神经切除术后,8天时Cys S mRNA的这种统计学显著增加有所减少,但并未完全被抑制。这些数据表明,完整的交感神经支配对于发育中的下颌下腺中IPR诱导的Cys S基因表达并非必需;然而,交感神经支配对于发育中的下颌下腺中Cys S基因的完全IPR反应是必需的。本文所呈现的发育实验表明,来自交感神经系统的因子参与了大鼠下颌下腺中IPR诱导的Cys S基因表达。