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Gsα通过环磷酸腺苷(cAMP)和蛋白激酶A刺激MDCK细胞的转胞吞作用和顶端分泌。

Gs alpha stimulates transcytosis and apical secretion in MDCK cells through cAMP and protein kinase A.

作者信息

Hansen S H, Casanova J E

机构信息

Massachusetts General Hospital East, Charlestown 02129.

出版信息

J Cell Biol. 1994 Aug;126(3):677-87. doi: 10.1083/jcb.126.3.677.

Abstract

Recent evidence suggests a role for heterotrimeric G proteins in vesicular transport. Cholera toxin, which activates Gs alpha by ADP-ribosylation, has been reported to stimulate both apical secretion (Pimplikar, S.W., and K. Simons. 1993. Nature (Lond.). 352:456-458) and apically directed transcytosis (Bomsel, M., and K.E. Mostov. 1993. J. Biol. Chem. 268:25824-25835) in MDCK cells, via a cAMP-independent mechanism. Here, we demonstrate that apical secretion and apically directed transcytosis are significantly stimulated by agents that elevate cellular cAMP. Forskolin, which activates adenylyl cyclase directly, and 8BrcAMP augment both transport processes in MDCK cells. The increase is not limited to receptor-mediated transport (polymeric Ig receptor), since transcytosis of ricin, a galactose-binding lectin, is similarly stimulated. The effects of elevated cellular cAMP on apical secretion and transcytosis are apparently mediated via protein kinase A (PKA), as they are inhibited by H-89, a selective PKA inhibitor. Experiments employing a 17 degrees C temperature block indicate that cAMP/PKA acts at a late, possibly rate-limiting stage in the transcytotic pathway, after translocation of internalized markers into the apical cytoplasm. However, no significant stimulus of apical recycling was observed in the presence of FSK, suggesting that cAMP/PKA either affects transcytosis at a level proximal to apical early endosomes and/or specifically increases the efficiency by which transcytosing molecules are delivered to the apical plasma membrane. Finally, we overexpressed wild-type Gs alpha and a mutant, Q227L, which constitutively activates adenylyl cyclase, in MDCK cells. Although Q227L increased transcytosis more than wild-type Gs alpha, neither construct was as effective as FSK in stimulating transcytosis, arguing against a significant role of Gs alpha in transcytosis independent of cAMP and PKA.

摘要

近期证据表明异源三聚体G蛋白在囊泡运输中发挥作用。霍乱毒素通过ADP-核糖基化激活Gsα,据报道它能通过一种不依赖cAMP的机制刺激MDCK细胞的顶端分泌(Pimplikar, S.W., and K. Simons. 1993. Nature (Lond.). 352:456 - 458)以及顶端定向的转胞吞作用(Bomsel, M., and K.E. Mostov. 1993. J. Biol. Chem. 268:25824 - 25835)。在此,我们证明顶端分泌和顶端定向的转胞吞作用受到能升高细胞内cAMP的试剂的显著刺激。直接激活腺苷酸环化酶的福斯可林和8-溴-cAMP增强了MDCK细胞中的这两种运输过程。这种增加并不局限于受体介导的运输(聚合免疫球蛋白受体),因为半乳糖结合凝集素蓖麻毒素的转胞吞作用也受到类似刺激。细胞内cAMP升高对顶端分泌和转胞吞作用的影响显然是通过蛋白激酶A(PKA)介导的,因为它们被选择性PKA抑制剂H-89所抑制。采用17℃温度阻断的实验表明,cAMP/PKA在转胞吞途径中一个较晚的、可能是限速阶段起作用,即在内化标记物转运到顶端细胞质之后。然而,在存在福斯可林的情况下未观察到顶端再循环的显著刺激,这表明cAMP/PKA要么在靠近顶端早期内体的水平影响转胞吞作用,和/或特异性地提高转胞吞分子被递送到顶端质膜的效率。最后,我们在MDCK细胞中过表达了野生型Gsα和一种组成性激活腺苷酸环化酶的突变体Q227L。尽管Q227L比野生型Gsα更能增加转胞吞作用,但两种构建体在刺激转胞吞作用方面都不如福斯可林有效,这表明Gsα在不依赖cAMP和PKA的转胞吞作用中没有显著作用。

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