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Endogenous sphingomyelin segregates into submicrometric domains in the living erythrocyte membrane

机译:内源性鞘磷脂在活血红细胞膜中分离成亚微米结构域

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摘要

We recently reported that trace insertion of exogenous fluorescent (green BODIPY) analogs of sphingomyelin (SM) into living red blood cells (RBCs), partially spread onto coverslips, labels submicrometric domains, visible by confocal microscopy. We here extend this feature to endogenous SM, upon binding of a SM-specific nontoxic (NT) fragment of the earthworm toxin, lysenin, fused to the red monomeric fluorescent protein, mCherry [construct named His-mCherry-NT-lysenin (lysenin*)]. Specificity of lysenin* binding was verified with composition-defined liposomes and by loss of 125I-lysenin* binding to erythrocytes upon SM depletion by SMase. The 125I-lysenin* binding isotherm indicated saturation at 3.5 × 106 molecules/RBC, i.e., ∼3% of SM coverage. Nonsaturating lysenin* concentration also labeled sub­micrometric domains on the plasma membrane of partially spread erythrocytes, colocalizing with inserted green BODIPY-SM, and abrogated by SMase. Lysenin*-labeled domains were stable in time and space and were regulated by temperature and cholesterol. The abundance, size, positioning, and segregation of lysenin*-labeled domains from other lipids (BODIPY-phosphatidylcholine or -glycosphingolipids) depended on membrane tension. Similar lysenin*-labeled domains were evidenced in RBCs gently suspended in 3D-gel. Taken together, these data demonstrate submicrometric compartmentation of endogenous SM at the membrane of a living cell in vitro, and suggest it may be a genuine feature of erythrocytes in vivo.
机译:最近,我们报道了鞘磷脂(SM)的外源荧光(绿色BODIPY)类似物向活血红细胞(RBC)中的痕量插入,部分扩散到盖玻片上,标记了亚微米域,通过共聚焦显微镜可见。我们将worm毒素lysin的SM特异性无毒(NT)片段与红色单体荧光蛋白mCherry融合后,将此特征扩展到内源性sm [结构名为His-mCherry-NT-lysenin(lysenin * )]。 lysenin *结合的特异性用组成成分确定的脂质体和SMase耗尽SM后失去 125 I-lysenin *与红细胞的结合来验证。 125 I-lysenin *的结合等温线表明饱和度为3.5×10 6 分子/ RBC,约占SM覆盖率的3%。非饱和的lysenin *浓度还标记了部分扩散的红细胞质膜上的亚微米级结构域,与插入的绿色BODIPY-SM共定位,并被SMase废除。 Lysenin *标记的结构域在时间和空间上稳定,并受温度和胆固醇调节。 lysenin *标记的结构域与其他脂质(BODIPY-磷脂酰胆碱或-鞘糖脂)的丰度,大小,位置和分离取决于膜张力。在轻轻悬浮在3D凝胶中的RBC中证实了类似的lysenin *标记的结构域。综上所述,这些数据证明了内源性SM在体外活细胞膜上的亚微米级分隔,并暗示它可能是体内红细胞的真正特征。

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