Grupo de Biología Estructural y Biotecnología, Universidad Nacional de Quilmes, 1876 Bernal, Buenos Aires, Argentina; IMBICE, CONICET-CIC-Universidad Nacional de La Plata, B1906APO La Plata, Buenos Aires, Argentina.
Grupo de Biología Estructural y Biotecnología, Universidad Nacional de Quilmes, 1876 Bernal, Buenos Aires, Argentina; IMBICE, CONICET-CIC-Universidad Nacional de La Plata, B1906APO La Plata, Buenos Aires, Argentina; Department of Molecular Diabetology, University Hospital and Faculty of Medicine, TU Dresden, 01307 Dresden, Germany; Paul Langerhans Institute Dresden of the Helmholtz Center Munich at the University Hospital and Faculty of Medicine, TU Dresden, 01307 Dresden, Germany; German Center for Diabetes Research (DZD e.V.), 85764 Neuherberg, Germany.
J Biol Chem. 2019 May 24;294(21):8564-8576. doi: 10.1074/jbc.RA119.007607. Epub 2019 Apr 12.
Type 1 diabetes islet cell autoantigen 512 (ICA512/IA-2) is a tyrosine phosphatase-like intrinsic membrane protein involved in the biogenesis and turnover of insulin secretory granules (SGs) in pancreatic islet β-cells. Whereas its membrane-proximal and cytoplasmic domains have been functionally and structurally characterized, the role of the ICA512 N-terminal segment named "regulated endocrine-specific protein 18 homology domain" (RESP18HD), which encompasses residues 35-131, remains largely unknown. Here, we show that ICA512 RESP18HD residues 91-131 encode for an intrinsically disordered region (IDR), which acts as a condensing factor for the reversible aggregation of insulin and other β-cell proteins in a pH and Zn-regulated fashion. At variance with what has been shown for other granule cargoes with aggregating properties, the condensing activity of ICA512 RESP18HD is displayed at a pH close to neutral, in the pH range found in the early secretory pathway, whereas it is resolved at acidic pH and Zn concentrations resembling those present in mature SGs. Moreover, we show that ICA512 RESP18HD residues 35-90, preceding the IDR, inhibit insulin fibrillation Finally, we found that glucose-stimulated secretion of RESP18HD upon exocytosis of SGs from insulinoma INS-1 cells is associated with cleavage of its IDR, conceivably to prevent its aggregation upon exposure to neutral pH in the extracellular milieu. Taken together, these findings point to ICA512 RESP18HD being a condensing factor for protein sorting and granulogenesis early in the secretory pathway and for prevention of amyloidogenesis.
1 型糖尿病胰岛细胞自身抗原 512(ICA512/IA-2)是一种酪氨酸磷酸酶样固有膜蛋白,参与胰腺胰岛β细胞胰岛素分泌颗粒(SGs)的生物发生和周转。虽然其膜近端和细胞质结构域已经在功能和结构上进行了表征,但 ICA512 N 端片段“调节内分泌特异性蛋白 18 同源结构域”(RESP18HD)的作用在很大程度上仍然未知,该片段包含残基 35-131。在这里,我们表明 ICA512 RESP18HD 的残基 91-131 编码一个内无序区域(IDR),它作为一个凝聚因子,以 pH 和 Zn 调节的方式可逆地聚集胰岛素和其他β细胞蛋白。与具有聚集特性的其他颗粒货物所显示的情况不同,ICA512 RESP18HD 的凝聚活性在接近中性的 pH 下显示,在早期分泌途径中发现的 pH 范围内,而在酸性 pH 和 Zn 浓度下则得到解决,类似于成熟 SGs 中存在的那些。此外,我们表明,位于 IDR 之前的 ICA512 RESP18HD 残基 35-90 抑制胰岛素纤维化。最后,我们发现,来自胰岛素瘤 INS-1 细胞的 SG 出胞时,RESP18HD 的葡萄糖刺激分泌与它的 IDR 切割有关,这可能是为了防止其在细胞外环境中性 pH 下暴露时聚集。综上所述,这些发现表明 ICA512 RESP18HD 是一种凝聚因子,用于在分泌途径早期进行蛋白质分选和颗粒发生,以及防止淀粉样变性。