Stoppini Monica, Mangione Palma, Monti Maria, Giorgetti Sofia, Marchese Loredana, Arcidiaco Patrizia, Verga Laura, Segagni Siro, Pucci Piero, Merlini Giampaolo, Bellotti Vittorio
Dipartimento di Biochimica, Università degli Studi di Pavia, via Taramelli 3b, 27100 Pavia, Italy.
Biochim Biophys Acta. 2005 Nov 10;1753(1):23-33. doi: 10.1016/j.bbapap.2005.07.019. Epub 2005 Aug 15.
Knowledge on the chemical structure of beta2-microglobulin in natural amyloid fibrils is quite limited because of the difficulty in obtaining tissue samples suitable for biochemical studies. We have reviewed the available information on the chemical modifications and we present new data of beta2-microglobulin extracted from non-osteotendinous tissues. beta2-microglobulin can accumulate in these compartments after long-term haemodialysis but rarely forms amyloid deposits. We confirm that truncation at the N-terminus is an event specific to beta2-microglobulin derived from fibrils but is not observed in the beta2-microglobulin from plasma or from the insoluble non-fibrillar material deposited in the heart and spleen. We also confirm the partial deamidation of Asn 17 and Asn 42, as well as the oxidation of Met 99 in fibrillar beta2-microglobulin. Other previously reported chemical modifications cannot be excluded, but should involve less than 1-2% of the intact molecule.
由于难以获得适合生化研究的组织样本,关于天然淀粉样纤维中β2微球蛋白化学结构的知识相当有限。我们回顾了有关化学修饰的现有信息,并展示了从非骨腱组织中提取的β2微球蛋白的新数据。长期血液透析后,β2微球蛋白可在这些部位积聚,但很少形成淀粉样沉积物。我们证实,N端截短是源自纤维的β2微球蛋白特有的事件,但在血浆中的β2微球蛋白或沉积在心脏和脾脏中的不溶性非纤维状物质中的β2微球蛋白中未观察到。我们还证实了纤维状β2微球蛋白中Asn 17和Asn 42的部分脱酰胺作用,以及Met 99的氧化。不能排除其他先前报道的化学修饰,但应涉及不到完整分子的1-2%。