CAU and ACC Joint-Laboratory of Space Food, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing 100083, People's Republic of China.
J Biochem. 2010 May;147(5):679-88. doi: 10.1093/jb/mvp212. Epub 2010 Jan 6.
In contrast to animal ferritin, relatively little information is available on phytoferritin. Black bean (Phaseolus vulgaris L.) has been consumed in many countries. In the present study, new ferritin from black bean seed was purified by two consecutive anion exchange and size exclusion chromatography. The apparent molecular mass of the native black bean seed ferritin (BSF) was found to be approximately 560 kDa by native PAGE analysis. N-terminal sequence, MALDI-TOF-MS and MS/MS analyses indicate that BSF and soybean seed ferritin (SSF) share very high identity in amino acid sequence. However, SDS-PAGE result indicates that BSF consists of 26.5 (H-1) and 28.0 kDa (H-2) subunits with a ratio of 2 : 1, while the ratio of these two subunits in SSF is 1 : 1. This result demonstrates that the two proteins have different subunit composition which might affect their activities in iron uptake and release. Indeed, at high iron flux, the initial rate of iron oxidative deposition in apoBSF is larger than that in apoSSF. On the contrary, the iron release from BSF is significantly slower than that from SSF. All these results indicate that phytoferritin might regulate the transit of iron into and out of the protein cavity by changing its subunit composition.
与动物铁蛋白相比,关于植物铁蛋白的信息相对较少。黑豆(菜豆属)在许多国家都有食用。本研究通过连续两次阴离子交换和凝胶过滤层析从黑豆种子中纯化出新的铁蛋白。通过天然 PAGE 分析,发现天然黑豆种子铁蛋白(BSF)的表观分子量约为 560 kDa。N 端序列、MALDI-TOF-MS 和 MS/MS 分析表明,BSF 和大豆种子铁蛋白(SSF)在氨基酸序列上具有很高的同源性。然而,SDS-PAGE 结果表明,BSF 由 26.5(H-1)和 28.0 kDa(H-2)亚基组成,比例为 2:1,而 SSF 中这两个亚基的比例为 1:1。这一结果表明,这两种蛋白质具有不同的亚基组成,这可能影响它们在铁摄取和释放中的活性。事实上,在高铁通量下,apoBSF 中铁的氧化沉积初始速率大于 apoSSF。相反,BSF 中铁的释放明显比 SSF 慢。所有这些结果表明,植物铁蛋白可能通过改变其亚基组成来调节铁进出蛋白腔的转运。