Hill Karen, Li Yawei, Bennett Matt, McKay Melissa, Zhu Xinjun, Shern Jack, Torre Enrique, Lah James J, Levey Allan I, Kahn Richard A
Department of Biochemistry, School of Medicine, Emory University, Atlanta, Georgia 30322-3050, USA.
J Biol Chem. 2003 Sep 19;278(38):36032-40. doi: 10.1074/jbc.M301632200. Epub 2003 Jul 3.
Coat proteins cycle between soluble and membrane-bound locations at the time of vesicle biogenesis and act to regulate the assembly of the vesicle coat that determines the specificity in cargo selection and the destination of the vesicle. A transmembrane cargo protein, an Arf GTPase, and a coat protein (e.g. COPs, APs, or GGAs) are minimal components required for budding of vesicles. Munc18 interacting proteins (MINTs) are a family of three proteins implicated in the localization of receptors to the plasma membrane. We show that MINTs bind Arfs directly, co-localize with Arf and the Alzheimer's precursor protein (beta-APP) to regions of the Golgi/trans-Golgi network, and can co-immunoprecipitate clathrin. We demonstrate that MINTs bind Arfs through a region of the PTB domain and the PDZ2 domain, and Arf-MINT interaction is necessary for the increased cellular levels of beta-APP produced by MINT overexpression. Knockdown (small interference RNA) experiments implicate beta-APP as a transmembrane cargo protein that works together with MINTs. We propose that MINTs are a family of Arf-dependent, vesicle-coat proteins that can regulate the traffic of beta-APP.
在囊泡生物发生时,衣被蛋白在可溶性和膜结合位置之间循环,并起到调节囊泡衣被组装的作用,囊泡衣被决定了货物选择的特异性和囊泡的目的地。一种跨膜货物蛋白、一种Arf GTP酶和一种衣被蛋白(如COP、AP或GGA)是囊泡出芽所需的最小成分。Munc18相互作用蛋白(MINT)是一个由三种蛋白组成的家族,与受体定位于质膜有关。我们发现MINT直接结合Arf,与Arf和阿尔茨海默病前体蛋白(β-淀粉样前体蛋白,beta-APP)共定位于高尔基体/反式高尔基体网络区域,并且可以与网格蛋白进行共免疫沉淀。我们证明MINT通过PTB结构域和PDZ2结构域的一个区域结合Arf,并且Arf-MINT相互作用对于MINT过表达导致的β-APP细胞水平升高是必需的。敲低(小干扰RNA)实验表明β-APP是一种与MINT共同作用的跨膜货物蛋白。我们提出MINT是一个依赖Arf的囊泡衣被蛋白家族,可调节β-APP的运输。