首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Functional evaluation of tryptophans in glycolipid binding and membrane interaction by HET-C2, a fungal glycolipid transfer protein
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Functional evaluation of tryptophans in glycolipid binding and membrane interaction by HET-C2, a fungal glycolipid transfer protein

机译:HET-C2的糖脂胆汁结合和膜相互作用的功能性评价,真菌糖脂转移蛋白

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摘要

HET-C2 is a fungal glycolipid transfer protein (GLTP) that uses an evolutionarily-modified GLTP-fold to achieve more focused transfer specificity for simple neutral glycosphingolipids than mammalian GLTPs. Only one of HET-C2's two Trp residues is topologically identical to the three Trp residues of mammalian GLTP. Here, we provide the first assessment of the functional roles of HET-C2 Trp residues in glycolipid binding and membrane interaction. Point mutants HET-C2(W208F), HET-C2(W208A) and HET-C2(F149Y) all retained 90% activity and 80-90% intrinsic Trp fluorescence intensity; whereas HET-C2(F149A) transfer activity decreased to similar to 55% but displayed similar to 120% intrinsic Trp emission intensity. Thus, neither W208 nor F149 is absolutely essential for activity and most Trp emission intensity (similar to 85-90%) originates from Trp109. This conclusion was supported by HET-C2(W109Y/F149Y) which displayed similar to 8% intrinsic Trp intensity and was nearly inactive. Incubation of the HET-C2 mutants with 1-palmitoyl-2-oleoyl-phosphatidylcholine vesicles containing different monoglycosylceramides or presented by lipid ethanol-injection decreased Trp fluorescence intensity and blue-shifted the Trp lambda(max) by differing amounts compared to wtHET-C2. With HET-C2 mutants for Trp208, the emission intensity decreases (similar to 30-40%) and lambda(max) blue-shifts (similar to 12 nm) were more dramatic than for wtHET-C2 or F149 mutants and closely resembled human GLTP. When Trp109 was mutated, the glycolipid induced changes in HET-C2 emission intensity and km blue-shift were nearly nonexistent. Our findings indicate that the HET-C2 Trp lambda(max) blue-shift is diagnostic for glycolipid binding; whereas the emission intensity decrease reflects higher environmental polarity encountered upon nonspecific interaction with phosphocholine headgroups comprising the membrane interface and specific interaction with the hydrated glycolipid sugar.
机译:Het-C2是一种真菌糖脂转移蛋白(GLTP),其使用进化改性的GLTP折叠,以实现比哺乳动物GLTPS的简单中性糖磷脂的更加聚焦的转移特异性。只有一个HET-C2的两个TRP残基拓扑上与哺乳动物GLTP的三个TRP残留物相同。在这里,我们提供了HET-C2 TRP残基在糖脂结合和膜相互作用中的功能作用的第一次评估。点突变体HET-C2(W208F),HET-C2(W208A)和HET-C2(F149Y)所有保留> 90%活性和80-90%的内在TRP荧光强度;而Het-C2(F149A)转移活性降低至类似于55%,但显示出类似于120%的内在TRP发射强度。因此,W208和F149都不是活动的绝对必需的,并且大多数TRP发射强度(类似于85-90%)来自TRP109。该结论是由HET-C2(W109Y / F149Y)的支持,其显示出类似于8%的内在TRP强度,并且几乎无活性。用含有不同单糖基胺的1-palmItoyl-2-OXeoyl-磷脂酰胆碱囊泡孵育的HET-C2突变体或通过脂质乙醇注射呈现的TRP荧光强度降低,与WTHET-C2相比,通过不同的量蓝移位TRPλ(最大) 。对于TRP208的HET-C2突变体,发射强度降低(类似于30-40%)和λ(最大)蓝移(类似于12nm)比WTHET-C2或F149突变体更戏剧,并且与WHET-C149突变体密切相关。当TRP109突变时,糖脂诱导的HET-C2发射强度和KM蓝移的变化几乎不存在。我们的研究结果表明,HET-C2 TRP Lambda(MAX)蓝移是糖脂结合的诊断;然而,发射强度降低反射了与包含膜界面和与水合糖脂糖的特定相互作用的非特异性相互作用时遇到的较高的环境极性。

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