Zhang Yu-Qing, Tao Mei-Lin, Shen Wei-De, Zhou Yu-Zhen, Ding Yue, Ma Yan, Zhou Wen-Lin
School of Agriculture Science and Technology, Soochow University, 1 Shizi St. Suzhou, Jiangsu 215006, China.
Biomaterials. 2004 Aug;25(17):3751-9. doi: 10.1016/j.biomaterials.2003.10.019.
The natural silk sericin recovered from Bombyx mori silk waste by the degumming processing in the high-temperature and high-pressure is a macromolecular protein. Amino acid composition and molecular weight range of the sericin protein as a vector for enzyme immobilization were investigated. The silk sericin protein with different molecular mass from 50 to 200 kDa was poorly soluble microparticles with an average size of about 10 microm. Anti-leukemic enzyme L-asparaginase (L-ASNase) was covalently conjugated on the microparticles of the sericin protein. The immobilized L-ASNase on the natural support by cross-linking with glutaraldehyde maintained 62.5% of the original activity of the enzyme. The Km of sericin-conjugates was 8 times lower than that of native L-ASNase. The bioconjugation of L-ASNase widened the optimum reactive temperature range of the enzyme. The immobilized L-ASNase showed significantly higher stability when the temperature raised to 40-50 degrees C, it also showed preferable resistance to trypsin digestion as compared with native enzyme. The results are discussed regarding the possible explanations of sericin-induced enzyme stability, as well as the possible applications of immobilized L-ASNase research.
通过高温高压脱胶处理从家蚕废丝中回收的天然丝胶是一种大分子蛋白质。研究了作为酶固定化载体的丝胶蛋白的氨基酸组成和分子量范围。分子量在50至200 kDa之间的丝胶蛋白是平均尺寸约为10微米的难溶性微粒。抗白血病酶L-天冬酰胺酶(L-ASNase)共价结合在丝胶蛋白微粒上。通过与戊二醛交联固定在天然载体上的L-ASNase保留了该酶原始活性的62.5%。丝胶缀合物的Km比天然L-ASNase低8倍。L-ASNase的生物缀合拓宽了该酶的最佳反应温度范围。当温度升至40 - 50摄氏度时,固定化的L-ASNase表现出显著更高的稳定性,与天然酶相比,它对胰蛋白酶消化也表现出更好的抗性。讨论了关于丝胶诱导酶稳定性的可能解释以及固定化L-ASNase研究的可能应用的结果。