Proteome and Glycoproteome Analyses Reveal Regulation of Protein Glycosylation Site-Specific Occupancy and Lysosomal Hydrolase Maturation by N-Glycan-Dependent ER-Quality Control.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-10-04 Epub Date: 2024-09-05 DOI:10.1021/acs.jproteome.4c00378
Jingru Chen, Piaopiao Wen, Yu-He Tang, Hanjie Li, Zibo Wang, Xiuyuan Wang, Xiaoman Zhou, Xiao-Dong Gao, Morihisa Fujita, Ganglong Yang
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Abstract

N-Glycan-dependent endoplasmic reticulum quality control (ERQC) primarily mediates protein folding, which determines the fate of the polypeptide. Monoglucose residues on N-glycans determine whether the nascent N-glycosylated proteins enter into and escape from the calnexin (CANX)/calreticulin (CALR) cycle, which is a central system of the ERQC. To reveal the impact of ERQC on glycosylation and protein fate, we performed comprehensive quantitative proteomic and glycoproteomic analyses using cells defective in N-glycan-dependent ERQC. Deficiency of MOGS encoding the ER α-glucosidase I, CANX, or/and CALR broadly affected protein expression and glycosylation. Among the altered glycoproteins, the occupancy of oligomannosidic N-glycans was significantly affected. Besides the expected ER stress, proteins and glycoproteins involved in pathways for lysosome and viral infection are differentially changed in those deficient cells. We demonstrated that lysosomal hydrolases were not correctly modified with mannose-6-phosphates on the N-glycans and were directly secreted to the culture medium in N-glycan-dependent ERQC mutant cells. Overall, the CANX/CALR cycle promotes the correct folding of glycosylated peptides and influences the transport of lysosomal hydrolases.

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蛋白质组和糖蛋白组分析揭示了 N-糖依赖性 ER 质量控制对蛋白质糖基化位点特异性占据和溶酶体水解酶成熟的调控。
依赖于 N-糖基的内质网质量控制(ERQC)主要介导蛋白质折叠,从而决定多肽的命运。N-聚糖上的单葡萄糖残基决定了新生的N-糖基化蛋白质是否进入或脱离钙粘蛋白(CANX)/钙网织蛋白(CALR)循环,这是ERQC的一个核心系统。为了揭示ERQC对糖基化和蛋白质命运的影响,我们利用N-糖依赖性ERQC缺陷细胞进行了全面的定量蛋白质组和糖蛋白组分析。编码ER α-葡萄糖苷酶I、CANX或/和CALR的MOGS缺陷广泛影响了蛋白质的表达和糖基化。在发生变化的糖蛋白中,寡甘露糖苷酸 N-聚糖的占有率受到显著影响。除了预期的ER压力外,参与溶酶体和病毒感染途径的蛋白质和糖蛋白在这些缺陷细胞中也发生了不同程度的变化。我们证明,溶酶体水解酶没有被 N-聚糖上的甘露糖-6-磷酸正确修饰,而是直接分泌到 N-聚糖依赖性 ERQC 突变体细胞的培养液中。总之,CANX/CALR 循环可促进糖基化多肽的正确折叠,并影响溶酶体水解酶的转运。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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