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Direct interaction instrumental for signaling processes between LacCer and Lyn in the lipid rafts of neutrophil-like cells

机译:LacCer和Lyn之间在嗜中性粒细胞样细胞脂质筏中的直接相互作用对信号传导过程至关重要

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摘要

Lactosylceramide [LacCer; β-Gal-(1-4)-β-Glc-(1-1)-Cer] has been shown to contain very long fatty acids that specifically modulate neutrophil properties. The interactions between LacCer and proteins and their role in cell signaling processes were assessed by synthesizing two molecular species of azide-photoactivable tritium-labeled LacCer having acyl chains of different lengths. The lengths of the two acyl chains corresponded to those of a short/medium and very long fatty acid, comparable to the lengths of stearic and lignoceric acids, respectively. These derivatives, designated C18-[3H]LacCer-(N3) and C24-[3H]LacCer-(N3), were incorporated into the lipid rafts of plasma membranes of neutrophilic differentiated HL-60 (D-HL-60) cells. C24-[3H]LacCer-(N3), but not C18-[3H]LacCer-(N3), induced the phosphorylation of Lyn and promoted phagocytosis. Incorporation of C24-[3H]LacCer-(N3) into plasma membranes, followed by illumination, resulted in the formation of several tritium-labeled LacCer-protein complexes, including the LacCer-Lyn complex, into plasma membrane lipid rafts. Administration of C18-[3H]LacCer-(N3) to cells, however, did not result in the formation of the LacCer-Lyn complex. These results suggest that LacCer derivatives mimic the biological properties of natural LacCer species and can be utilized as tools to study LacCer-protein interactions, and confirm a specific direct interaction between LacCer species containing very long fatty acids, and Lyn protein, associated with the cytoplasmic layer via myristic/palmitic chains.
机译:乳糖神经酰胺[LacCer;已显示β-Gal-(1-4)-β-Glc-(1-1)-Cer]含有非常长的脂肪酸,这些脂肪酸可以特异性调节嗜中性粒细胞的特性。通过合成具有不同长度酰基链的叠氮化物可光活化tri标记的LacCer的两个分子种类,可以评估LacCer与蛋白质之间的相互作用及其在细胞信号传导过程中的作用。两条酰基链的长度分别对应于短/中和非常长的脂肪酸,分别相当于硬脂酸和木质酸的长度。将这些称为C18-[ 3 H] LacCer-(N3)和C24-[ 3 H] LacCer-(N3)的衍生物掺入血浆脂质筏中嗜中性分化HL-60(D-HL-60)细胞的膜。 C24-[ 3 H] LacCer-(N3)而不是C18-[ 3 H] LacCer-(N3)诱导Lyn的磷酸化并促进吞噬作用。将C24-[ 3 H] LacCer-(N3)掺入质膜,然后照射,导致形成了若干tri标记的LacCer-蛋白质复合物,包括LacCer-Lyn复合物。质膜脂质筏。但是,向细胞施用C18-[ 3 H] LacCer-(N3)不会导致LacCer-Lyn复合物的形成。这些结果表明,LacCer衍生物模拟天然LacCer物种的生物学特性,可以用作研究LacCer-蛋白质相互作用的工具,并确认包含非常长脂肪酸的LacCer物种与与细胞质相关的Lyn蛋白之间的特定直接相互作用。通过肉豆蔻/棕榈酸链层。

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