Sugiura Kanako, Kawai Yuho, Yamamoto Arisa, Yoshioka Hiroki, Kiyohara Yuika, Iida Ayaka, Ozawa Yurika, Nishikawa Mai, Miura Nobuaki, Hanamatsu Hisatoshi, Furukawa Jun-Ichi, Shinohara Yasuro
Department of Pharmacy, Kinjo Gakuin University, Nagoya 463-8521, Japan.
Department of Pharmacy, Gifu University of Medical Science, 4-3-3 Nijigaoka, Kani, Gifu 509-0293, Japan.
Biochim Biophys Acta Gen Subj. 2023 May;1867(5):130331. doi: 10.1016/j.bbagen.2023.130331. Epub 2023 Feb 16.
This study determined the effect of brefeldin A (BFA) on the free N-glycomic profile of HepG2 cells to better understand the effect of blocking intracellular vesicle formation and transport of proteins from the endoplasmic reticulum to the Golgi apparatus. A series of exoglycosidase- and endoglycosidase-assisted analyses clarified the complex nature of altered glycomic profiles. A key feature of BFA-mediated alterations in Gn2-type glycans was the expression of unusual hybrid-, monoantennary- and complex-type free N-glycans (FNGs). BFA-mediated alterations in Gn1-type glycans were characterized by the expression of unusual hybrid- and monoantennary-FNGs, without significant expression of complex-type FNGs. A time course analysis revealed that sialylated hybrid- and complex-type Gn2-type FNGs were generated later than asialo-Gn2-type FNGs, and the expression profiles of Gn2-type FNGs and N-glycans were found to be similar, suggesting that the metabolic flux of FNGs is the same as that of protein-bound N-glycans. Subcellular glycomic analysis revealed that almost all FNGs were detected in the cytoplasmic extracts. Our data suggest that hybrid-, monoantennary- and complex-type Gn2-type FNGs were cleaved from glycoproteins in the cytosol by cytosolic PNGase, and subsequently digested by cytosolic endo-β-N-acetylglucosaminidase (ENGase) to generate Gn1-type FNGs. The substrate specificity of ENGase explains the limited expression of complex Gn1 type FNGs.
本研究确定了布雷菲德菌素A(BFA)对HepG2细胞游离N-糖组图谱的影响,以更好地理解阻断细胞内囊泡形成以及蛋白质从内质网到高尔基体的转运所产生的影响。一系列外切糖苷酶和内切糖苷酶辅助分析阐明了糖组图谱改变的复杂性质。BFA介导的Gn2型聚糖改变的一个关键特征是异常杂合型、单天线型和复合型游离N-聚糖(FNGs)的表达。BFA介导的Gn1型聚糖改变的特征是异常杂合型和单天线型FNGs的表达,而复合型FNGs无明显表达。时间进程分析表明,唾液酸化的杂合型和复合型Gn2型FNGs的产生晚于去唾液酸Gn2型FNGs,并且发现Gn2型FNGs和N-聚糖的表达谱相似,这表明FNGs的代谢通量与蛋白质结合的N-聚糖相同。亚细胞糖组分析表明,几乎所有FNGs都在细胞质提取物中检测到。我们的数据表明,杂合型(、单天线型和复合型Gn2型FNGs是由胞质中的PNGase从糖蛋白上切割下来的,随后被胞质内切β-N-乙酰氨基葡萄糖苷酶(ENGase)消化以生成Gn1型FNGs。ENGase的底物特异性解释了复合型Gn1型FNGs表达有限的原因。