Hinek A
Division of Cardiovascular Research, Hospital for Sick Children, Toronto, Ontario, Canada.
Ciba Found Symp. 1995;192:185-91; discussion 191-6. doi: 10.1002/9780470514771.ch10.
Numerous cell types express the 67 kDa galactolectin related to the alternatively spliced variant of beta-galactosidase. This 67 kDa protein, while present on cell surfaces, mediates cell contacts with elastin, laminin and collagen type IV. In elastin-producing tissues, the 67 kDa protein also co-localizes with intracellular tropoelastin and mature elastic fibres. We have established that this elastin binding protein (EBP) serves as a molecular chaperone for tropoelastin. The EBP binds this highly hydrophobic and unglycosylated ligand intracellularly, protecting it from intracellular self aggregation and premature proteolytic degradation, and mediates its orderly assembly upon the microfibrillar scaffold. While some of this protein is incorporated as a permanent component of elastic fibres, most of the EBP, after extracellular dissociation from its ligand, recycles back to the intracellular endosomal compartment and re-associates with the newly synthesized tropoelastin. We suggest that recycling of this reusable shuttle protein is imperative for the effective extracellular deposition of insoluble elastin.
许多细胞类型表达与β-半乳糖苷酶可变剪接变体相关的67 kDa半乳糖凝集素。这种67 kDa的蛋白质虽然存在于细胞表面,但介导细胞与弹性蛋白、层粘连蛋白和IV型胶原蛋白的接触。在产生弹性蛋白的组织中,67 kDa的蛋白质也与细胞内的原弹性蛋白和成熟弹性纤维共定位。我们已经确定这种弹性蛋白结合蛋白(EBP)作为原弹性蛋白的分子伴侣。EBP在细胞内结合这种高度疏水且未糖基化的配体,保护其免受细胞内自聚集和过早的蛋白水解降解,并介导其在微原纤维支架上有序组装。虽然这种蛋白质的一部分作为弹性纤维的永久成分被整合,但大多数EBP在从其配体细胞外解离后,循环回到细胞内的内体区室,并与新合成的原弹性蛋白重新结合。我们认为这种可重复使用的穿梭蛋白的循环对于不溶性弹性蛋白的有效细胞外沉积至关重要。