首页> 外文期刊>The protein journal >Distinct characteristics of single starch-binding domain SBD1 derived from tandem domains SBD1-SBD2 of halophilic Kocuria varians alpha-amylase.
【24h】

Distinct characteristics of single starch-binding domain SBD1 derived from tandem domains SBD1-SBD2 of halophilic Kocuria varians alpha-amylase.

机译:嗜盐的非洲葫芦科植物α-淀粉酶的串联结构域SBD1-SBD2衍生的单个淀粉结合结构域SBD1的不同特征。

获取原文
获取原文并翻译 | 示例
           

摘要

Kocuria varians alpha-amylase contains tandem starch-binding domains SBD1-SBD2 (SBD12) that possess typical halophilic characteristics. Recombinant tandem domains SBD12 and single domain SBD1, both with amino-terminal hexa-His tag, were expressed in and purified to homogeneity from Escherichia coli. The circular dichroism (CD) spectrum of His-SBD12 was characterized by a positive peak at 233 nm ascribed to the aromatic stacking. Although the signal occurred in the far UV region, it is an indication of tertiary structure folding. CD spectrum of single domain His-SBD1 exhibited the same peak position, signal intensity and spectral shape as those of His-SBD12, suggesting that the aromatic stacking must occur within the domain, and that two SBD domains in SBD12 and SBD1 has a similar folded structure. This structural observation was consistent with the biological activity that His-SBD1 showed binding activity against raw starch granules and amylose resin with 70-80% efficiency compared with binding of equimolar His-SBD12. Although the thermal unfolding rate of SBD12 and SBD1 were similar, the refolding rates of SBD12 and SBD1 from thermal melting were greatly different: His-SBD12 refolded slowly (T(1/2) = ~84 min), while refolding of single domain His-SBD1 was found to be 20-fold faster (T(1/2) = 4.2 min). The possible mechanism of this large difference in refolding rate was discussed. Maltose at 20 mM showed 5-6 °C increase in thermal melting of both His-SBD12 and His-SBD1, while its effects on the time course of unfolding and refolding were insignificant.
机译:墨西哥小叶锦鸡儿α-淀粉酶含有串联淀粉结合结构域SBD1-SBD2(SBD12),具有典型的嗜盐特性。重组串联结构域SBD12和单结构域SBD1,都带有氨基末端hexa-His标签,在大肠杆菌中表达并纯化至同质。 His-SBD12的圆二色性(CD)光谱的特征是归属于芳族堆积的233 nm正峰。尽管该信号发生在远紫外线区域,但这表明三级结构折叠。单结构域His-SBD1的CD谱显示出与His-SBD12相同的峰位置,信号强度和频谱形状,这表明芳族堆积必须在该结构域内发生,并且SBD12和SBD1中的两个SBD结构域具有相似的折叠结构体。该结构观察结果与His-SBD1显示出对生淀粉颗粒和直链淀粉树脂的结合活性相比,与等摩尔His-SBD12的结合活性高70-80%。尽管SBD12和SBD1的热解折叠速率相似,但热融解后SBD12和SBD1的重折叠速率却大不相同:His-SBD12缓慢折叠(T(1/2)=〜84 min),而单域His的折叠发现-SBD1快20倍(T(1/2)= 4.2分钟)。讨论了这种较大的重折叠率差异的可能机制。麦芽糖在20 mM处显示His-SBD12和His-SBD1的热融化增加5-6°C,而其对展开和重新折叠的时间过程的影响微不足道。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号