Ringeling P L, Cleton M I, Huijskes-Heins M I, Seip M J, de Bruijn W C, van Eijk H G
Department of Chemical Pathology, Erasmus University Rotterdam, The Netherlands.
Biol Met. 1990;3(3-4):176-82. doi: 10.1007/BF01140576.
The livers of iron-loaded rats were fractionated and a cytosolic fraction, a lysosomal fraction, a siderosomal fraction and haemosiderin were obtained. All iron-containing compounds from these fractions were isolated and their morphology, Fe/P ratios, iron core diameter and peptide content were compared. The cytosolic fraction contained ferritin (CF) and a slower sedimenting, light ferritin (CLF). The lysosomal fraction also contained ferritin (LF) and a slower sedimenting light ferritin (LLF). The siderosomal fraction contained ferritin (SF), a faster sedimenting non-ferritin iron compound (SIC) and haemosiderin (HS). SIC and HS did not resemble ferritin as much as the other products did, but were found to be water-insoluble aggregates. The Fe/P ratios of CF and CLF were lower than the Fe/P ratios of LF and LLF and these in turn had lower Fe/P ratios than SF, SIC and HS. The iron core diameter of the cytosolic ferritin was increased after lysosomal uptake. The iron core diameters of the siderosomal products were smaller. CLF, CF, LF, LLF and SF contained one kind of subunit of approximately 20.5 kDa. SIC and HS contained other peptides in addition to the 20.5-kDa subunit. The results indicate that storage of ferritin molecules is not limited to the cytosolic compartment, but is also the case in the lysosomes. Extensive degradation of the ferritin molecule seems to be confined to the siderosomes.
对铁过载大鼠的肝脏进行分级分离,获得了胞质组分、溶酶体组分、铁体组分和含铁血黄素。从这些组分中分离出所有含铁化合物,并比较它们的形态、铁/磷比率、铁芯直径和肽含量。胞质组分含有铁蛋白(CF)和沉降较慢的轻铁蛋白(CLF)。溶酶体组分也含有铁蛋白(LF)和沉降较慢的轻铁蛋白(LLF)。铁体组分含有铁蛋白(SF)、沉降较快的非铁蛋白铁化合物(SIC)和含铁血黄素(HS)。SIC和HS与其他产物相比不太像铁蛋白,但被发现是水不溶性聚集体。CF和CLF的铁/磷比率低于LF和LLF的铁/磷比率,而LF和LLF的铁/磷比率又低于SF、SIC和HS的铁/磷比率。溶酶体摄取后,胞质铁蛋白的铁芯直径增加。铁体产物的铁芯直径较小。CLF、CF、LF、LLF和SF含有一种约20.5 kDa的亚基。SIC和HS除了含有20.5 kDa亚基外,还含有其他肽。结果表明,铁蛋白分子的储存不限于胞质区室,溶酶体中也是如此。铁蛋白分子的广泛降解似乎局限于铁体。