首页> 外文期刊>Marine biotechnology >In vitro synthesis of proteoglycans and collagen in primary cultures of mantle cells from the nacreous mollusk, haliotis tuberculata: A new model for study of molluscan extracellular matrix
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In vitro synthesis of proteoglycans and collagen in primary cultures of mantle cells from the nacreous mollusk, haliotis tuberculata: A new model for study of molluscan extracellular matrix

机译:珍珠贝类眼罩软体动物原代培养中的蛋白聚糖和胶原的体外合成:软体动物细胞外基质研究的新模型

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摘要

In Mollusca, the mantle produces an organic matrix that mineralizes in time to make shell. Primary mantle cell cultures from the nacreous gastropod Haliotis tuberculata have been established as useful experimental model to investigate in vitro synthesis of both proteoglycans/glycosaminoglycans (PGs/GAGs) and collagen. First, we tested different enzymatic digestion procedures to find the method that gives the highest percentage of viable and adherent cultured cells. Enzhmatic digestion with 0.1% pronase plus 0.1% collagenase was routinely used. Six days after the initiation of culture, about 80% of cells were viable, among which 20% were adherent as quantified by the MTT reduction assay. In addition the protein synthesis estimated by [~3H] leucine incorporation remained constant during this period. For the first time, we demonstrated a de novo synthesis of PGs/GAGs and collagen in primary cultures of mantle cells. After 48 hours of labeling, among the [~3H]-D-glucosamine macromolecules synthesized, [~3H]PGs/GAGs represented 43%, divided into 45% heparan sulfate, 37% chondroitin/dermatan sulfate, and 6% hyaluronic acid. Early elution on anion-exchange chromatography of these PGs/GAGs indicated that most of them appeared as undersulfated GAG molecules. De novo synthesis of collagen represents 4.52%+-0.84% (SD) with respect to the total protein synthesis. Such a model will facilitate studies on the synthesis of PGs/GAGs and collagen as components of the extracellular matrix and its regulation in Mollusca. Both PGs/GAGs and collagen participate in molecular events that regulate cell adhesion,migration, and proliferation. Further studies with this type of in vitro model should provide knwoledge about novel aspects of molluscan cell signaling, in relation to extracellular matrix components.
机译:在软体动物中,地幔产生一种有机基质,该基质会及时矿化以形成壳。已经建立了来自腹足纲纲嗜盐菌Halootis tuberculata的原始套细胞培养物作为有用的实验模型,以研究蛋白聚糖/糖胺聚糖(PGs / GAGs)和胶原蛋白的体外合成。首先,我们测试了不同的酶消化程序,以找到能提供最高百分比的存活和粘附培养细胞的方法。通常使用0.1%链酶和0.1%胶原酶的酶消化法。培养开始六天后,大约80%的细胞是存活的,其中20%的细胞通过MTT还原试验进行了粘附。另外,在此期间,通过[〜3H]亮氨酸掺入估计的蛋白质合成保持恒定。首次,我们证明了在地幔细胞的原代培养物中从头合成了PGs / GAGs和胶原蛋白。标记48小时后,在合成的[〜3H] -D-葡萄糖胺大分子中,[〜3H] PG / GAG占43%,分为45%的硫酸乙酰肝素,37%的软骨素/硫酸皮肤素和6%的透明质酸。这些PG / GAG的阴离子交换色谱法的早期洗脱表明,它们中的大多数以未硫化的GAG分子形式出现。从头合成胶原蛋白占总蛋白质合成的4.52%+-0.84%(SD)。这种模型将有助于研究PGs / GAGs和胶原蛋白作为细胞外基质的组成成分及其在软体动物中的调控。 PG / GAG和胶原蛋白都参与调节细胞粘附,迁移和增殖的分子事件。这种类型的体外模型的进一步研究应提供有关软体动物细胞信号传导有关细胞外基质成分的新方面的知识。

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