Ferraro Francesco, Ma Xin-Ming, Sobota Jacqueline A, Eipper Betty A, Mains Richard E
Neuroscience Department, University of Connecticut Health Center, Farmington, CT 06030-3401, USA.
Mol Biol Cell. 2007 Dec;18(12):4813-25. doi: 10.1091/mbc.e07-05-0503. Epub 2007 Sep 19.
The molecular mechanisms involved in the maturation of secretory granules, organelles that store hormones and neuropeptides, are poorly understood. As granule content proteins are processed, the composition of granule membranes changes, yielding constitutive-like secretion of immature content proteins and producing secretagogue-responsive mature granules. Constitutive-like secretion was not previously recognized as a process subject to regulation. We show that Kalirin and Trio, homologous Rho guanine nucleotide exchange factors (GEFs), which interact with a secretory granule resident protein, modulate cargo secretion from immature granules. Some of the Kalirin and Trio isoforms expressed in neuroendocrine cells colocalize with immature granules. Overexpression of their N-terminal GEF domain (GEF1) enhances secretion from immature granules, depleting cells of secretory cargo in the absence of secretagogue. This response requires GEF1 activity and is mimicked by Kalirin/Trio substrates Rac1 and RhoG. Accordingly, selective pharmacological inhibition of endogenous GEF1 activity decreases secretagogue-independent release of hormone precursors, accumulating product peptide in mature secretory granules. Kalirin/Trio modulation of cargo secretion from immature granules provides secretory cells with an extra layer of control over the sets of peptides released. Control of this step enhances the range of physiological responses that can be elicited, whereas lack of control could have pathological consequences.
分泌颗粒是储存激素和神经肽的细胞器,其成熟过程中涉及的分子机制目前尚不清楚。随着颗粒内容物蛋白质的加工,颗粒膜的组成发生变化,导致未成熟内容物蛋白质出现组成型样分泌,并产生对促分泌剂有反应的成熟颗粒。组成型样分泌以前未被认为是一个受调控的过程。我们发现,与一种分泌颗粒驻留蛋白相互作用的同源Rho鸟嘌呤核苷酸交换因子(GEF)Kalirin和Trio,可调节未成熟颗粒的货物分泌。在神经内分泌细胞中表达的一些Kalirin和Trio异构体与未成熟颗粒共定位。其N端GEF结构域(GEF1)的过表达增强了未成熟颗粒的分泌,在没有促分泌剂的情况下使细胞内的分泌货物耗尽。这种反应需要GEF1活性,并被Kalirin/Trio的底物Rac1和RhoG模拟。因此,对内源性GEF1活性的选择性药理抑制可减少激素前体的促分泌剂非依赖性释放,使成熟分泌颗粒中积累产物肽。Kalirin/Trio对未成熟颗粒货物分泌的调节为分泌细胞提供了对释放的肽组的额外控制层。对这一步骤的控制扩大了可引发的生理反应范围,而缺乏控制可能会产生病理后果。