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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Quantitative evaluation of the cell penetrating properties of an iodinated Tyr-l-maurocalcine analog
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Quantitative evaluation of the cell penetrating properties of an iodinated Tyr-l-maurocalcine analog

机译:碘化的Tyr-1-maurocalcine类似物的细胞穿透特性的定量评估

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摘要

L-Maurocalcine (L-MCa) is the first reported animal cell-penetrating toxin. Characterizing its cell penetration properties is crucial considering its potential as a vector for the intracellular delivery of drugs. Radiolabeling is a sensitive and quantitative method to follow the cell accumulation of a molecule of interest. An L-MCa analog containing an additional N-terminal tyrosine residue (Tyr-L-MCa) was synthesized, shown to fold and oxidize properly, and successfully radioiodinated to 125I-Tyr-L-MCa. Using various microscopy techniques, the average volume of the rat line F98 glioma cells was evaluated at 8.9 to 18.9×10-7μl. 125I-Tyr-L-MCa accumulates within cells with a dose-dependency similar to the one previously published using 5,6-carboxyfluorescein-L-MCa. According to subcellular fractionation of F98 cells, plasma membranes keep less than 3% of the peptide, regardless of the extracellular concentration, while the nucleus accumulates over 75% and the cytosol around 20% of the radioactive material. Taking into account both nuclear and cytosolic fractions, cells accumulate intracellular concentrations of the peptide that are equal to the extracellular concentrations. Estimation of 125I-Tyr-L-MCa cell entry kinetics indicate a first rapid phase with a 5min time constant for the plasma membrane followed by slower processes for the cytoplasm and the nucleus. Once inside cells, the labeled material no longer escapes from the intracellular environment since 90% of the radioactivity remains 24h after washout. Dead cells were found to have a lower uptake than live ones. The quantitative information gained herein will be useful for better framing the use of L-MCa in biotechnological applications. This article is part of a Special Issue entitled: Calcium Signaling in Health and Disease. Guest Editors: Geert Bultynck, Jacques Haiech, Claus W. Heizmann, Joachim Krebs, and Marc Moreau.
机译:L-毛钙糖蛋白(L-MCa)是第一个报道的穿透动物细胞的毒素。考虑到其作为药物在细胞内递送的载体的潜力,表征其细胞渗透特性至关重要。放射性标记是一种追踪目标分子细胞积累的灵敏且定量的方法。合成了包含额外的N-末端酪氨酸残基的L-MCa类似物(Tyr-L-MCa),显示折叠和正确氧化,并成功地放射性碘化为125I-Tyr-L-MCa。使用各种显微镜技术,将大鼠F98胶质瘤细胞系的平均体积评估为8.9至18.9×10-7μl。 125I-Tyr-L-MCa的剂量依赖性类似于先前使用5,6-羧基荧光素-L-MCa的剂量依赖性。根据F98细胞的亚细胞分级分离,质膜保持少于3%的肽,而不管细胞外浓度如何,而细胞核中放射性物质的积聚超过75%,而胞质溶胶的积聚约为20%。考虑到核部分和胞质部分,细胞积累的肽的细胞内浓度等于细胞外浓度。对125 I-Tyr-L-MCa细胞进入动力学的估计表明,第一个快速阶段的质膜具有5分钟的时间常数,随后是细胞质和细胞核的较慢过程。一旦进入细胞内,标记的物质就不再从细胞内环境中逸出,因为90%的放射活性在冲洗后24小时仍保留。发现死细胞的摄取低于活细胞。本文获得的定量信息将有助于更好地确定L-MCa在生物技术应用中的使用。本文是《健康与疾病中的钙信号传导》一期特刊的一部分。客座编辑:Geert Bultynck,Jacques Haiech,Claus W. Heizmann,Joachim Krebs和Marc Moreau。

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