首页> 外文期刊>International Journal of Molecular Sciences >The Lys-Asp-Tyr Triad within the Mite Allergen Der p 1 Propeptide Is a Critical Structural Element for the pH-Dependent Initiation of the Protease Maturation
【24h】

The Lys-Asp-Tyr Triad within the Mite Allergen Der p 1 Propeptide Is a Critical Structural Element for the pH-Dependent Initiation of the Protease Maturation

机译:螨过敏原Der p 1前肽内的Lys-Asp-Tyr三联体是pH依赖的蛋白酶成熟起始的关键结构元素。

获取原文
           

摘要

The major house dust mite allergen, Der p 1, is a papain-like cysteine protease expressed as an inactive precursor, proDer p 1, carrying an N-terminal propeptide with a unique structure. The maturation of the zymogen into an enzymatically-active form of Der p 1 is a multistep autocatalytic process initiated under acidic conditions through conformational changes of the propeptide, leading to the loss of its inhibitory ability and its subsequent gradual cleavage. The aims of this study were to characterize the residues present in the Der p 1 propeptide involved in the initiation of the zymogen maturation process, but also to assess the impact of acidic pH on the propeptide structure, the activity of Der p 1 and the fate of the propeptide. Using various complementary enzymatic and structural approaches, we demonstrated that a structural triad K17p-D51p-Y19p within the N-terminal domain of the propeptide is essential for its stabilization and the sensing of pH changes. Particularly, the protonation of D51p under acidic conditions unfolds the propeptide through disruption of the K17p-D51p salt bridge, reduces its inhibition capacity and unmasks the buried residues K17p and Y19p constituting the first maturation cleavage site of the zymogen. Our results also evidenced that this triad acts in a cooperative manner with other propeptide pH-responsive elements, including residues E56p and E80p, to promote the propeptide unfolding and/or to facilitate its proteolysis. Furthermore, we showed that acidic conditions modify Der p 1 proteolytic specificity and confirmed that the formation of the first intermediate represents the limiting step of the in vitro Der p 1 maturation process. Altogether, our results provide new insights into the early events of the mechanism of proDer p 1 maturation and identify a unique structural triad acting as a stabilizing and a pH-sensing regulatory element.
机译:主要的屋尘螨过敏原Der p 1是一种木瓜蛋白酶样半胱氨酸蛋白酶,表达为无活性的前体proDer p 1,带有一个具有独特结构的N末端前肽。将酶原成熟为酶活性形式的Der p 1是在酸性条件下通过前肽的构象变化引发的多步自催化过程,导致其抑制能力的丧失和随后的逐步裂解。这项研究的目的是表征存在于酶原成熟过程启动过程中的Der p 1前肽中的残基,还评估酸性pH对前肽结构,Der p 1活性和命运的影响。前肽。使用各种互补的酶促和结构方法,我们证明了前肽N末端结构域内的结构三联体K17p-D51p-Y19p对于其稳定和感测pH值至关重要。特别地,在酸性条件下D51p的质子化通过破坏K17p-D51p盐桥来展开前肽,降低其抑制能力,并掩盖构成酶原的第一个成熟裂解位点的掩埋残基K17p和Y19p。我们的结果还证明了该三联体与其他前肽pH响应元件(包括残基E56p和E80p)协同作用,以促进前肽的展开和/或促进其蛋白水解。此外,我们表明酸性条件会改变Der p 1的蛋白水解特异性,并证实第一中间体的形成代表了体外Der p 1成熟过程的限制步骤。总而言之,我们的结果为proDer p 1成熟机制的早期事件提供了新见解,并确定了起稳定作用和pH敏感调节元件作用的独特结构三联体。

著录项

相似文献

  • 外文文献
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