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兔泪腺腺泡细胞中内源性、转导性和内吞性催乳素的运输

Traffic of endogenous, transduced, and endocytosed prolactin in rabbit lacrimal acinar cells.

作者信息

Wang Yanru, Chiu Christopher T, Nakamura Tamako, Walker Ameae M, Petridou Barbara, Trousdale Melvin D, Hamm-Alvarez Sarah F, Mircheff Austin K, Schechter Joel E

机构信息

Department of Physiology & Biophysics, Keck School of Medicine, University of Southern California, Los Angeles, CA, USA.

出版信息

Exp Eye Res. 2007 Dec;85(6):749-61. doi: 10.1016/j.exer.2007.08.009. Epub 2007 Aug 24.

Abstract

The rabbit lacrimal gland undergoes an immunophysiological transformation during pregnancy, reminiscent of that of the mammary gland as it prepares to deliver secretory IgA into the nascent fluid product. The contents of TGF-beta and prolactin (PRL) within ductal epithelial cells increase, and their primary localizations shift from the apical to the basal cytoplasm, suggesting a transformation from exocrine to paracrine secretion. Studies with ex vivo acinar cell models demonstrated that elevated PRL suppresses traffic of secretory proteins into the regulated exocrine apparatus and directs them into a novel, induced, regulated paracrine apparatus [Wang, Y., Chiu, C.T., Nakamura, T., Walker, A.M., Petridou, B., Trousdale M.D., Hamm-Alvarez S.F., Schechter J.E., Mircheff A.K., 2007. Elevated prolactin redirects secretory vesicle traffic in rabbit lacrimal acinar cells. Am. J. Physiol. Endocrinol. Metab. 292, E1122-E1134]. However, it was not clear whether PRL itself entered the induced paracrine apparatus. In the present study, confocal immunofluorescence microscopy revealed that natively expressed PRL and over-expressed PRL co-localized with PRL receptors (PRLR); rab11, a marker for the recycling endosome; gamma-adaptin, a marker for the Golgi complex and trans-Golgi network; and rab7, a marker for the autophagic lysosomal apparatus. Natively expressed, over-expressed, and endocytosed PRL also co-localized with rab4 and rab5A, markers for the early endosome, and with rab3D, a marker for regulated exocrine secretory vesicles. Endocytosed PRL was stored in intact form and released in response to stimulation with carbachol. Subcellular fractionation analysis detected relative excesses of PRL over PRLR in fractions that contained fragments of the recycling endosome and fractions that contained both secretory vesicle fragments and prelysosomal and autolysosomal fragments. EM-gold microscopy demonstrated PRL within small vesicles, consistent with endosomes or secondary lysosomes, and in large vesicles, consistent with regulated secretory vesicles. The secretory vesicles were preponderantly localized in the apical cytoplasm of control cells, and in the basal cytoplasm of PRL over-expressing cells. These results indicate that when lacrimal epithelial cells synthesize PRL, and when they endocytose it from their ambient medium, they traffic it both into the endosomes that constitute the constitutive transcytotic paracrine apparatus and also into regulated secretory vesicles, which are associated with the exocrine apparatus at low PRL levels and with the induced paracrine apparatus at high PRL levels.

摘要

兔泪腺在妊娠期间会经历免疫生理转变,这让人联想到乳腺在准备将分泌型IgA输送到新生液体产物时的转变。导管上皮细胞内转化生长因子-β(TGF-β)和催乳素(PRL)的含量增加,且它们的主要定位从顶端细胞质转移至基底细胞质,这表明从外分泌向旁分泌分泌发生了转变。对离体腺泡细胞模型的研究表明,升高的PRL会抑制分泌蛋白进入受调控的外分泌装置,并将它们导向一种新的、诱导性的、受调控的旁分泌装置[Wang, Y., Chiu, C.T., Nakamura, T., Walker, A.M., Petridou, B., Trousdale M.D., Hamm-Alvarez S.F., Schechter J.E., Mircheff A.K., 2007. Elevated prolactin redirects secretory vesicle traffic in rabbit lacrimal acinar cells. Am. J. Physiol. Endocrinol. Metab. 292, E1122-E1134]。然而,尚不清楚PRL自身是否进入了诱导性旁分泌装置。在本研究中,共聚焦免疫荧光显微镜显示,天然表达的PRL和过表达的PRL与PRL受体(PRLR)、回收型内体的标志物rab11、高尔基体复合体和反式高尔基体网络的标志物γ-衔接蛋白以及自噬溶酶体装置的标志物rab7共定位。天然表达的、过表达的和内吞的PRL也与早期内体的标志物rab4和rab5A以及受调控的外分泌分泌囊泡的标志物rab3D共定位。内吞的PRL以完整形式储存,并在受到卡巴胆碱刺激时释放。亚细胞分级分离分析在含有回收型内体片段的级分以及含有分泌囊泡片段和前溶酶体及自溶酶体片段的级分中检测到PRL相对于PRLR有相对过量存在。电子显微镜金标法显示PRL存在于小囊泡内,与内体或次级溶酶体一致,也存在于大囊泡内,与受调控的分泌囊泡一致。分泌囊泡主要定位于对照细胞的顶端细胞质以及PRL过表达细胞的基底细胞质中。这些结果表明,当泪腺上皮细胞合成PRL时,以及当它们从周围介质中内吞PRL时,它们会将PRL转运到构成组成型转胞吞旁分泌装置的内体中,同时也转运到受调控的分泌囊泡中,在低PRL水平时这些囊泡与外分泌装置相关,在高PRL水平时与诱导性旁分泌装置相关。

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