Yamashita T, Yoshioka M, Itoh N
Department of Genetic Biochemistry, Kyoto University Graduate School of Pharmaceutical Sciences, Yoshida-Shimoadachi, Sakyo, Kyoto, 606-8501, Japan.
Biochem Biophys Res Commun. 2000 Oct 22;277(2):494-8. doi: 10.1006/bbrc.2000.3696.
We isolated mouse cDNA encoding a novel FGF (251 amino acids). As this is the 23rd documented FGF, we termed it FGF-23. FGF-23 has a hydrophobic amino terminus ( approximately 24 amino acids), which is a typical signal sequence. As expected, recombinant mouse FGF-23 was efficiently secreted by High Five insect cell-infected recombinant baculovirus containing the cDNA, indicating that FGF-23 is a secreted protein. We also isolated human cDNA encoding FGF-23 (251 amino acids), which is highly identical ( approximately 72% amino acid identity) to mouse FGF-23. Of human FGF family members, FGF-23 is most similar to FGF-21 and FGF-19 ( approximately 24% and approximately 22% amino acid identities, respectively). Human FGF-23 gene was localized on the chromosome 12p13 and found to be tandem linked (within 5.5 kb) to human FGF-6 gene. The expression of FGF-23 mRNA in mouse adult tissues was examined by real-time quantitative polymerase chain reaction. FGF-23 mRNA was mainly expressed in the brain and thymus at low levels. The localization of FGF-23 mRNA in the brain was examined by in situ hybridization. FGF-23 mRNA in the brain was found to be preferentially expressed in the ventrolateral thalamic nucleus. Therefore, FGF-23 is expected a unique FGF that plays roles in the function of the ventrolateral thalamic nucleus.
我们分离出了编码一种新型成纤维细胞生长因子(FGF,含251个氨基酸)的小鼠cDNA。由于这是第23个被记录的FGF,我们将其命名为FGF-23。FGF-23具有一个疏水的氨基末端(约24个氨基酸),这是一个典型的信号序列。正如预期的那样,重组小鼠FGF-23由含有该cDNA的被重组杆状病毒感染的High Five昆虫细胞有效分泌,这表明FGF-23是一种分泌蛋白。我们还分离出了编码FGF-23(251个氨基酸)的人类cDNA,它与小鼠FGF-23高度同源(氨基酸同一性约为72%)。在人类FGF家族成员中,FGF-23与FGF-21和FGF-19最为相似(氨基酸同一性分别约为24%和约22%)。人类FGF-23基因定位于染色体12p13,并且发现它与人类FGF-6基因串联相连(在5.5 kb范围内)。通过实时定量聚合酶链反应检测了FGF-23 mRNA在小鼠成年组织中的表达。FGF-23 mRNA主要在脑和胸腺中低水平表达。通过原位杂交检测了FGF-23 mRNA在脑中的定位。发现脑中的FGF-23 mRNA优先在腹外侧丘脑核中表达。因此,FGF-23有望成为一种在腹外侧丘脑核功能中发挥作用的独特FGF。