Suresh Ambati,Xiaorong Lin,Zachary A Lewis,Richard B Meagher
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引用次数: 0
摘要
DectiSomes是包裹有病原体受体的载药脂质体,如c型凝集素(CTL) Dectin-2 (D2)和Dectin-3 (D3, MCL)。这些ctl的碳水化合物识别结构域(CRDs)漂浮在DectiSomes表面,形成二聚体,结合其同源低聚糖配体。我们之前已经证明,两性霉素B (AmB)负载的dectisome, D2-AmB-LLs和D3-AmB-LLs,可以有效地结合和杀死多种病原真菌。白色念珠菌细胞壁和胞外多糖基质中最著名的Dectin-2和Dectin-3配体包括多种寡聚糖。当D2-AmB-LLs或D3-AmB-LLs在其腔内用互补的绿色和红色荧光蛋白金星和mCherry标记时,它们在白色念珠菌菌落中结合了相同的低聚糖重叠区域。相比之下,当d2 - amb - ls和d3 - amb - ls用互补的小荧光团FITC和罗丹明B或Venus和mCherry标记在膜表面时,它们结合的大多是不重叠的配体。当Dectin-2和Dectin-3蛋白被FITC和罗丹明的互补对标记时,它们也主要结合不同的配体。我们提出了几个模型来解释Dectin和DectiSome配体特异性的这些变化。这些发现也对免疫脂质体的配体结合特性提出了重要的问题。
DectiSomes are drug-loaded liposomes coated with pathogen receptors, such as the C-type lectins (CTL) Dectin-2 (D2) and Dectin-3 (D3, MCL). Floating on the surface of DectiSomes, the carbohydrate recognition domains (CRDs) of these CTLs form dimers that bind their cognate oligoglycan ligands. We have shown previously that amphotericin B (AmB)-loaded DectiSomes, D2-AmB-LLs and D3-AmB-LLs, are effective at binding and killing diverse pathogenic fungi. The best-known ligands of Dectin-2 and Dectin-3 in the Candida albicans cell wall and exopolysaccharide matrix include a wide variety of oligomannans. When D2-AmB-LLs or D3-AmB-LLs were labeled in their lumen with complementary green and red fluorescent proteins, Venus and mCherry, they bound the same overlapping regions of oligoglycans in C. albicans colonies. By contrast, when D2-AmB-LLs and D3-AmB-LLs were labeled on their membrane surfaces with complementary pairs of the small fluorophores FITC and Rhodamine B or with Venus and mCherry, they bound mostly non-overlapping sets of ligands. When the Dectin-2 and Dectin-3 proteins were labeled with the complementary pairs of FITC and Rhodamine, they also bound primarily distinct ligands. We proposed several models to explain these alterations in Dectin and DectiSome ligand specificity. These findings also raise important questions about the ligand binding properties of immuno-liposomes.
期刊介绍:
The Journal of Biological Chemistry welcomes high-quality science that seeks to elucidate the molecular and cellular basis of biological processes. Papers published in JBC can therefore fall under the umbrellas of not only biological chemistry, chemical biology, or biochemistry, but also allied disciplines such as biophysics, systems biology, RNA biology, immunology, microbiology, neurobiology, epigenetics, computational biology, ’omics, and many more. The outcome of our focus on papers that contribute novel and important mechanistic insights, rather than on a particular topic area, is that JBC is truly a melting pot for scientists across disciplines. In addition, JBC welcomes papers that describe methods that will help scientists push their biochemical inquiries forward and resources that will be of use to the research community.