Shibasaki Yuri, Etoh Nobuaki, Hayasaka Michiko, Takahashi Moto-o, Kakitani Makoto, Yamashita Takeyoshi, Tomizuka Kazuma, Hanaoka Kazunori
Department of Bioscience, Kitasato University School of Science, Sagamihara, Kanagawa, Japan.
Biochem Biophys Res Commun. 2009 Apr 17;381(4):482-6. doi: 10.1016/j.bbrc.2009.02.067. Epub 2009 Feb 20.
NaPi-IIb encodes a Na(+)-dependent Pi co-transporter, which is expressed in various adult tissues and mediates transport of extracellular Pi ions coupling with Na(+) ion. To define the role of NaPi-IIbin vivo, NaPi-IIb gene deficient mice were generated utilizing targeted mutagenesis, yielding viable, heterozygous NaPi-IIb mice. In contrast, homozygous NaPi-IIb mice died in utero soon after implantation, indicating that NaPi-IIb was essential for early embryonic development. In situ hybridization revealed NaPi-IIb mRNA expression in the parietal endoderm, followed by the visceral endoderm, at a time point prior to establishment of a functioning chorio-allantoic placenta. At the time point of functional placenta development, the main site of NaPi-IIb production resided in the labyrinthine zone, where embryonic and maternal circulations were in closest contact. Expression patterns of NaPi-IIb suggest that NaPi-IIb plays an important role in Pi absorption from maternal circulation.
NaPi-IIb编码一种Na⁺依赖性磷酸根共转运体,该转运体在多种成年组织中表达,并介导细胞外磷酸根离子与Na⁺离子偶联的转运。为了在体内确定NaPi-IIb的作用,利用靶向诱变技术培育出了NaPi-IIb基因缺陷小鼠,得到了存活的杂合NaPi-IIb小鼠。相比之下,纯合NaPi-IIb小鼠在着床后不久便在子宫内死亡,这表明NaPi-IIb对早期胚胎发育至关重要。原位杂交显示,在功能性绒毛膜尿囊胎盘建立之前 的一个时间点,壁内胚层中存在NaPi-IIb mRNA表达,随后在内脏内胚层中也有表达。在功能性胎盘发育的时间点,NaPi-IIb产生的主要部位位于迷路区,这里胚胎和母体循环联系最为紧密。NaPi-IIb的表达模式表明,NaPi-IIb在从母体循环中吸收磷酸根方面发挥着重要作用。