生物
体内
巨噬细胞
体外
巨噬细胞极化
细胞生物学
巨噬细胞集落刺激因子
下调和上调
运输机
生物化学
分子生物学
基因
遗传学
作者
Rafael Samaniego,Blanca Soler Palacios,Ángeles Domiguez-Soto,Carlos Eugênio Soto Vidal,Azucena Salas,Takami Matsuyama,Carmen Sánchez‐Torres,Inmaculada de la Torre,María Eugenia Miranda-Carús,Paloma Sánchez‐Mateos,Amaya Puig‐Kröger
摘要
ABSTRACT Vitamin B9, commonly known as folate, is an essential cofactor for one-carbon metabolism that enters cells through three major specialized transporter molecules (RFC, FR, and PCFT), which differ in expression pattern, affinity for substrate, and ligand-binding pH dependency. We now report that the expression of the folate transporters differs between macrophage subtypes and explains the higher accumulation of 5-MTHF—the major folate form found in serum—in M2 macrophages in vitro and in vivo. M1 macrophages display a higher expression of RFC, whereas FRβ and PCFT are preferentially expressed by anti-inflammatory and homeostatic M2 macrophages. These differences are also seen in macrophages from normal tissues involved in folate transit (placenta, liver, colon) and inflamed tissues (ulcerative colitis, RA), as M2-like macrophages from normal tissues express FRβ and PCFT, whereas TNF-α-expressing M1 macrophages from inflamed tissues are RFC+. Besides, we provide evidences that activin A is a critical factor controlling the set of folate transporters in macrophages, as it down-regulates FRβ, up-regulates RFC expression, and modulates 5-MTHF uptake. All of these experiments support the notion that folate handling is dependent on the stage of macrophage polarization.
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