Kingan T G, Cardullo R A, Adams M E
Department of Cell Biology/Neuroscience, University of California, Riverside, CA 92521, USA.
J Biol Chem. 2001 Jul 6;276(27):25136-42. doi: 10.1074/jbc.M102421200. Epub 2001 Apr 19.
Inka cells of insect epitracheal glands (EGs) secrete preecdysis and ecdysis-triggering hormones (PETH and ETH) at the end of each developmental stage. Both peptides act in the central nervous system to evoke the ecdysis behavioral sequence, a stereotype behavior during which old cuticle is shed. Secretion of ETH is stimulated by a brain neuropeptide, eclosion hormone (EH). EH evokes accumulation of cGMP followed by release of ETH from Inka cells, and exogenous cGMP evokes secretion of ETH. The secretory responses to EH and cGMP are inhibited by the broad-spectrum kinase inhibitor staurosporine, and the response to EH is potentiated by the phosphatase inhibitor calyculin A. Staurosporine did not inhibit EH-evoked accumulation of cGMP. Changes in cytoplasmic Ca2+ in Inka cells during EH signaling were monitored via fluorescence ratioing with fura-2-loaded EGs. Cytoplasmic Ca2+ increases within 30-120 s after addition of EH to EGs, and it remains elevated for at least 10 min, corresponding with the time course of secretion. Secretion is increased in dose-dependent manner by the Ca2+-ATPase inhibitor thapsigargin, a treatment that does not elevate glandular cGMP above basal levels. The secretory response to EH is partially inhibited in glands loaded with EGTA, while cGMP levels are unaffected. These findings suggest that EH activates second messenger cascades leading to cGMP accumulation and Ca2+ mobilization and/or influx and that both pathways are required for a full secretory response. cGMP activates a staurosporine-inhibitable protein kinase. We propose that Ca2+ acts via a parallel cascade with a time course that is similar to that for cGMP activation of a cGMP-dependent protein kinase.
昆虫气管腺(EGs)的印卡细胞在每个发育阶段结束时分泌蜕皮前和蜕皮触发激素(PETH和ETH)。这两种肽在中枢神经系统中发挥作用,引发蜕皮行为序列,即蜕去旧表皮的刻板行为。ETH的分泌受到一种脑肽——羽化激素(EH)的刺激。EH引发cGMP的积累,随后印卡细胞释放ETH,外源性cGMP也能引发ETH的分泌。对EH和cGMP的分泌反应受到广谱激酶抑制剂星形孢菌素的抑制,而对EH的反应则被磷酸酶抑制剂花萼海绵诱癌素A增强。星形孢菌素并不抑制EH引发的cGMP积累。通过用fura - 2负载的EGs进行荧光比率测定,监测了EH信号传导过程中印卡细胞内细胞质Ca2+的变化。向EGs中添加EH后30 - 120秒内,细胞质Ca2+增加,并至少持续升高10分钟,这与分泌的时间进程相对应。Ca2+ - ATP酶抑制剂毒胡萝卜素以剂量依赖的方式增加分泌,这种处理不会使腺体cGMP水平高于基础水平。在加载EGTA的腺体中,对EH的分泌反应部分受到抑制,而cGMP水平不受影响。这些发现表明,EH激活第二信使级联反应,导致cGMP积累以及Ca2+动员和/或内流,并且这两条途径对于完整的分泌反应都是必需的。cGMP激活一种可被星形孢菌素抑制的蛋白激酶。我们提出,Ca2+通过一个平行级联发挥作用,其时间进程与cGMP激活cGMP依赖性蛋白激酶的时间进程相似。