Cai Tao, Hirai Hiroki, Fukushige Tetsunari, Yu Ping, Zhang Guofeng, Notkins Abner L, Krause Michael
Experimental Medicine Section, Oral Infection and Immunity Branch, National Institute of Dental and Craniofacial Research, National Institutes of Health, Bethesda, Maryland, United States of America.
PLoS Genet. 2009 Apr;5(4):e1000447. doi: 10.1371/journal.pgen.1000447. Epub 2009 Apr 3.
It is generally accepted that neuroendocrine cells regulate dense core vesicle (DCV) biogenesis and cargo packaging in response to secretory demands, although the molecular mechanisms of this process are poorly understood. One factor that has previously been implicated in DCV regulation is IA-2, a catalytically inactive protein phosphatase present in DCV membranes. Our ability to directly visualize a functional, GFP-tagged version of an IA-2 homolog in live Caenorhabditis elegans animals has allowed us to capitalize on the genetics of the system to screen for mutations that disrupt DCV regulation. We found that loss of activity in the transcription factor PAG-3/Gfi-1, which functions as a repressor in many systems, results in a dramatic up-regulation of IDA-1/IA-2 and other DCV proteins. The up-regulation of DCV components was accompanied by an increase in presynaptic DCV numbers and resulted in phenotypes consistent with increased neuroendocrine secretion. Double mutant combinations revealed that these PAG-3 mutant phenotypes were dependent on wild type IDA-1 function. Our results support a model in which IDA-1/IA-2 is a critical element in DCV regulation and reveal a novel genetic link to PAG-3-mediated transcriptional regulation. To our knowledge, this is the first mutation identified that results in increased neurosecretion, a phenotype that has clinical implications for DCV-mediated secretory disorders.
人们普遍认为,神经内分泌细胞会根据分泌需求调节致密核心囊泡(DCV)的生物发生和货物包装,尽管这一过程的分子机制仍知之甚少。先前被认为与DCV调节有关的一个因素是IA-2,它是一种存在于DCV膜中的无催化活性的蛋白磷酸酶。我们能够在活的秀丽隐杆线虫动物中直接观察到IA-2同源物的功能性绿色荧光蛋白(GFP)标记版本,这使我们能够利用该系统的遗传学来筛选破坏DCV调节的突变。我们发现,转录因子PAG-3/Gfi-1(在许多系统中起阻遏作用)的活性丧失会导致IDA-1/IA-2和其他DCV蛋白的显著上调。DCV成分的上调伴随着突触前DCV数量的增加,并导致与神经内分泌分泌增加一致的表型。双突变组合表明,这些PAG-3突变表型依赖于野生型IDA-1的功能。我们的结果支持了一个模型,其中IDA-1/IA-2是DCV调节的关键要素,并揭示了与PAG-3介导的转录调节的新遗传联系。据我们所知,这是首次鉴定出导致神经分泌增加的突变,这种表型对DCV介导的分泌紊乱具有临床意义。