Torkko Juha M, Primo M Evangelina, Dirkx Ronald, Friedrich Anne, Viehrig Antje, Vergari Elisa, Borgonovo Barbara, Sönmez Anke, Wegbrod Carolin, Lachnit Martina, Münster Carla, Sica Mauricio P, Ermácora Mario R, Solimena Michele
Paul Langerhans Institute Dresden, Uniklinikum Carl Gustav Carus, TU Dresden, Germany German Center for Diabetes Research (DZD e.V.), Neuherberg, Germany.
University of Buenos Aires, Buenos Aires, Argentina Instituto Multidisciplinario de Biología Celular, Consejo Nacional de Investigaciones Científicas y Técnicas, Buenos Aires, Argentina.
Mol Cell Biol. 2015 Mar;35(6):914-27. doi: 10.1128/MCB.00994-14. Epub 2015 Jan 5.
The type 1 diabetes autoantigen ICA512/IA-2/RPTPN is a receptor protein tyrosine phosphatase of the insulin secretory granules (SGs) which regulates the size of granule stores, possibly via cleavage/signaling of its cytosolic tail. The role of its extracellular region remains unknown. Structural studies indicated that β2- or β4-strands in the mature ectodomain (ME ICA512) form dimers in vitro. Here we show that ME ICA512 prompts proICA512 dimerization in the endoplasmic reticulum. Perturbation of ME ICA512 β2-strand N-glycosylation upon S508A replacement allows for proICA512 dimerization, O-glycosylation, targeting to granules, and conversion, which are instead precluded upon G553D replacement in the ME ICA512 β4-strand. S508A/G553D and N506A/G553D double mutants dimerize but remain in the endoplasmic reticulum. Removal of the N-terminal fragment (ICA512-NTF) preceding ME ICA512 allows an ICA512-ΔNTF G553D mutant to exit the endoplasmic reticulum, and ICA512-ΔNTF is constitutively delivered to the cell surface. The signal for SG sorting is located within the NTF RESP18 homology domain (RESP18-HD), whereas soluble NTF is retained in the endoplasmic reticulum. Hence, we propose that the ME ICA512 β2-strand fosters proICA512 dimerization until NTF prevents N506 glycosylation. Removal of this constraint allows for proICA512 β4-strand-induced dimerization, exit from the endoplasmic reticulum, O-glycosylation, and RESP18-HD-mediated targeting to granules.
1型糖尿病自身抗原ICA512/IA-2/RPTPN是胰岛素分泌颗粒(SGs)的一种受体蛋白酪氨酸磷酸酶,它可能通过其胞质尾部的裂解/信号传导来调节颗粒储存的大小。其细胞外区域的作用尚不清楚。结构研究表明,成熟胞外域(ME ICA512)中的β2-或β4-链在体外形成二聚体。在这里,我们表明ME ICA512在内质网中促使proICA512二聚化。用S508A替换时,ME ICA512 β2-链N-糖基化的扰动允许proICA512二聚化、O-糖基化、靶向颗粒和转化,而用G553D替换ME ICA512 β4-链时则会阻止这些过程。S508A/G553D和N506A/G553D双突变体形成二聚体,但仍保留在内质网中。去除ME ICA512之前的N端片段(ICA512-NTF)可使ICA512-ΔNTF G553D突变体离开内质网,并且ICA512-ΔNTF可组成性地转运到细胞表面。SG分选信号位于NTF RESP18同源结构域(RESP18-HD)内,而可溶性NTF保留在内质网中。因此,我们提出ME ICA512 β2-链促进proICA512二聚化,直到NTF阻止N506糖基化。去除这种限制允许proICA512 β4-链诱导的二聚化、从内质网中出来、O-糖基化以及RESP18-HD介导的靶向颗粒。