Department of Surgery, Beth Israel Deaconess Medical Center, Harvard Medical School, 300 Brookline Ave, Boston, MA 02215, United States.
Department of Psychiatry, Oregon Health & Science University, 3181 SW Sam Jackson Park Rd, Portland, OR 97239, United States.
Glycobiology. 2023 Dec 25;33(11):935-942. doi: 10.1093/glycob/cwad077.
The development and function of the brain requires N-linked glycosylation of proteins, which is a ubiquitous modification in the secretory pathway. N-glycans have a distinct composition and undergo tight regulation in the brain, but the spatial distribution of these structures remains relatively unexplored. Here, we systematically employed carbohydrate binding lectins with differing specificities to various classes of N-glycans and appropriate controls to identify glycan expression in multiple regions of the mouse brain. Lectins binding high-mannose-type N-glycans, the most abundant class of brain N-glycans, showed diffuse staining with some punctate structures observed on high magnification. Lectins binding specific motifs of complex N-glycans, including fucose and bisecting GlcNAc, showed more partitioned labeling, including to the synapse-rich molecular layer of the cerebellum. Understanding the spatial distribution of N-glycans across the brain will aid future studies of these critical protein modifications in development and disease of the brain.
大脑的发育和功能需要蛋白质的 N-连接糖基化,这是分泌途径中普遍存在的一种修饰。N-聚糖具有独特的组成,并在大脑中受到严格的调控,但这些结构的空间分布仍相对未知。在这里,我们系统地使用了具有不同特异性的碳水化合物结合凝集素,以识别多种小鼠脑区的聚糖表达。与高甘露糖型 N-聚糖结合的凝集素,这种最丰富的脑 N-聚糖,呈现弥漫性染色,在高倍放大时观察到一些点状结构。与复杂 N-聚糖的特定基序结合的凝集素,包括岩藻糖和双分支 GlcNAc,显示出更分区的标记,包括富含突触的小脑分子层。了解 N-聚糖在大脑中的空间分布将有助于未来研究这些在大脑发育和疾病中关键的蛋白质修饰。