Schiller M R, Mains R E, Eipper B A
The Department of Neuroscience, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205-2105, USA.
Mol Endocrinol. 1997 Nov;11(12):1846-57. doi: 10.1210/mend.11.12.0024.
Expression of many components of the secretory pathway in peptidergic neuroendocrine cells is precisely controlled in response to secretagogues. Regulated endocrine-specific protein (RESP18) was identified as a dopamine-regulated intermediate pituitary transcript. Although the amino acid sequence of RESP18 initially suggested that it might be a novel preprohormone, its widespread expression in peptide-producing neurons and endocrine cells and its localization to the lumen of the endoplasmic reticulum suggested that it subserves a unique function. Subtractive hybridization of a pituitary corticotrope AtT-20 cell line engineered for inducible RESP18 expression demonstrated a RESP18-dependent induction of several transcripts. Regulation of RESP18 expression in vitro and in vivo was accompanied by changes in the same transcripts. Several cDNAs encoding transcripts up-regulated by RESP18 were analyzed by DNA sequencing, searching the GenBank databases for homologous proteins, and Northern blotting. One novel clone showed a tissue distribution nearly identical to that of RESP18. One clone was identical to rat LIMK2, a protein kinase containing modular protein-protein interaction LIM (lin-11, isl-1, mec-3) domains. Another clone was similar to monomeric bacterial isocitrate dehydrogenases. Like the unfolded protein response, these data demonstrate a novel signaling pathway from the secretory pathway lumen to the nucleus. RESP18 acts as a lumicrine peptide (an intracellular luminal autocrine hormone) inducing this pathway.
肽能神经内分泌细胞中分泌途径的许多成分的表达会根据促分泌素进行精确调控。调节性内分泌特异性蛋白(RESP18)被鉴定为一种受多巴胺调节的垂体中间叶转录本。尽管RESP18的氨基酸序列最初表明它可能是一种新型前激素原,但其在产生肽的神经元和内分泌细胞中的广泛表达以及在内质网腔中的定位表明它具有独特的功能。对经过基因工程改造以诱导RESP18表达的垂体促肾上腺皮质激素AtT - 20细胞系进行消减杂交,结果显示几种转录本存在RESP18依赖性诱导。体外和体内RESP18表达的调节伴随着相同转录本的变化。通过DNA测序、在GenBank数据库中搜索同源蛋白以及Northern印迹分析了几种由RESP18上调的转录本的cDNA。一个新克隆显示出与RESP18几乎相同的组织分布。一个克隆与大鼠LIMK2相同,LIMK2是一种含有模块化蛋白质 - 蛋白质相互作用LIM(lin - 11、isl - 1、mec - 3)结构域的蛋白激酶。另一个克隆与单体细菌异柠檬酸脱氢酶相似。与未折叠蛋白反应一样,这些数据证明了一条从分泌途径腔到细胞核的新信号通路。RESP18作为一种腔分泌肽(一种细胞内腔自分泌激素)诱导这条通路。