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Megalin binds and mediates cellular internalization of folate binding protein

机译:巨蛋白结合并介导叶酸结合蛋白的细胞内在化

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Folate is an essential vitamin involved in a number of biological processes. High affinity folate binding proteins (FBPs) exist both as glycosylphosphatidylinositol-linked, membrane associated folate binding proteins and as soluble FBPs in plasma and some secretory fluids such as milk, saliva and semen. The function and significance of FBPs are unresolved, however, it has been suggested that they may facilitate folate uptake, e.g. during suckling. The present study shows that megalin, a large, multiligand endocytic receptor and member of the low-density lipoprotein-receptor family, is able to bind and mediate cellular uptake of FBP. Surface plasmon resonance analysis shows binding of bovine and human milk FBP to immobilized megalin, but not to low density lipoprotein receptor related protein. Binding of I-125-labeled folate binding protein (FBP) to sections of kidney proximal tubule, known to express high levels of megalin, is inhibitable by excess unlabeled FBP and by receptor associated protein, a known inhibitor of binding to megalin. Immortalized rat yolk sac cells, representing an established model for studying megalin-mediated uptake, reveal I-125-labeled FBP uptake which is inhibited by receptor associated protein and by antimegalin antibodies. Microinjection of I-125-labeled FBP into renal tubules in vivo shows proximal tubular uptake by endocytosis. Megalin is expressed in several absorptive epithelia, including intestine and kidney proximal tubule, and thus the present findings provide a mechanism for intestinal and renal endocytic uptake of soluble FBP.
机译:叶酸是许多生物过程中必需的维生素。高亲和力的叶酸结合蛋白(FBP)以糖基磷脂酰肌醇连接的,膜相关的叶酸结合蛋白的形式存在,并以血浆和一些分泌液(如牛奶,唾液和精液)中的可溶性FBP形式存在。 FBPs的功能和重要性尚待解决,但是,有人提出它们可能促进叶酸的吸收,例如:在哺乳期间。本研究表明,巨蛋白是一种大的,多配体的内吞受体,是低密度脂蛋白受体家族的成员,能够结合并介导FBP的细胞摄取。表面等离振子共振分析显示牛和人乳FBP与固定化的巨蛋白结合,但不与低密度脂蛋白受体相关蛋白结合。 I-125标记的叶酸结合蛋白(FBP)与已知表达高水平的megalin的肾脏近端小管部分的结合可被过量的未标记FBP和受体相关蛋白(一种与megalin结合的已知抑制剂)抑制。永生化的大鼠卵黄囊细胞代表了研究巨蛋白介导的摄取的已建立模型,揭示了I-125标记的FBP摄取,该摄取被受体相关蛋白和抗巨蛋白抗体抑制。体内向肾小管中微注射I-125标记的FBP显示了通过内吞作用近端肾小管摄取。巨蛋白在几种吸收性上皮中表达,包括肠和肾近端小管,因此,本发现为肠和肾内吞摄取可溶性FBP提供了一种机制。

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