Suppr超能文献

酵母和其他转化酶的寡聚结构决定了其特异性。

Oligomeric Structure of Yeast and Other Invertases Governs Specificity.

机构信息

Centro Nacional de Investigaciones Oncológicas (CNIO), Madrid, Spain.

Department of Crystallography and Structural Biology, Institute of Physical-Chemistry Blas Cabrera. CSIC, Madrid, Spain.

出版信息

Subcell Biochem. 2024;104:503-530. doi: 10.1007/978-3-031-58843-3_19.

Abstract

Invertases, or β-fructofuranosidases, are metabolic enzymes widely distributed among plants and microorganisms that hydrolyze sucrose and release fructose from various substrates. Invertase was one of the earliest discovered enzymes, first investigated in the mid-nineteenth century, becoming a classical model used in the primary biochemical studies on protein synthesis, activity, and the secretion of glycoproteins. However, it was not until 20 years ago that a member of this family of enzymes was structurally characterized, showing a bimodular arrangement with a β-propeller catalytic domain, and a β-sandwich domain with unknown function. Since then, many studies on related plant and fungal enzymes have revealed them as basically monomeric. By contrast, all yeast enzymes in this family that have been characterized so far have shown sophisticated oligomeric structures mediated by the non-catalytic domain, which is also involved in substrate binding, and how this assembly determines the particular specificity of each enzyme. In this chapter, we will review the available structures of yeast invertases to elucidate the mechanism regulating oligomer formation and compare them with other reported dimeric invertases in which the oligomeric assembly has no apparent functional implications. In addition, recent work on a new family of invertases with absolute specificity for the α-(1,2)-bond of sucrose found in cyanobacteria and plant invertases is highlighted.

摘要

转化酶,又称β-呋喃果糖苷酶,是广泛分布于植物和微生物中的代谢酶,能够水解蔗糖并从各种基质中释放果糖。转化酶是最早发现的酶之一,于 19 世纪中期首次被研究,成为用于蛋白质合成、活性和糖蛋白分泌的基础生物化学研究的经典模型。然而,直到 20 年前,该酶家族的一个成员才被结构表征,其呈现出双模块排列,具有β-推进器催化结构域和β-夹层结构域,而后者的功能未知。此后,对相关植物和真菌酶的许多研究表明,它们基本上是单体。相比之下,迄今为止已被表征的该家族中所有酵母酶均显示出复杂的寡聚结构,由非催化结构域介导,该结构域还参与底物结合,以及这种组装如何决定每种酶的特定特异性。在本章中,我们将回顾可用的酵母转化酶结构,以阐明调节寡聚形成的机制,并将其与其他报道的二聚转化酶进行比较,后者的寡聚组装没有明显的功能意义。此外,还强调了最近在蓝藻和植物转化酶中发现的对蔗糖α-(1,2)-键具有绝对特异性的新型转化酶家族的研究工作。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验