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真菌色氨酸合酶:连接 α 和 β 结构域的接头在 TRPS 中的作用是什么?分子动力学研究。

Fungi Tryptophan Synthases: What Is the Role of the Linker Connecting the α and β Structural Domains in TRPS? A Molecular Dynamics Investigation.

机构信息

EMBRAPA Agroindústria Tropical, Planalto do Pici, Fortaleza 60511-110, CE, Brazil.

LORIA, UMR 7504 CNRS, Université de Lorraine, 54000 Vandoeuvre les Nancy, France.

出版信息

Molecules. 2024 Feb 6;29(4):756. doi: 10.3390/molecules29040756.

Abstract

Tryptophan synthase (TRPS) is a complex enzyme responsible for tryptophan biosynthesis. It occurs in bacteria, plants, and fungi as an αββα heterotetramer. Although encoded by independent genes in bacteria and plants, in fungi, TRPS is generated by a single gene that concurrently expresses the α and β entities, which are linked by an elongated peculiar segment. We conducted 1 µs all-atom molecular dynamics simulations on TRPS to address two questions: (i) the role of the linker segment and (ii) the comparative mode of action. Since there is not an experimental structure, we started our simulations with homology modeling. Based on the results, it seems that TRPS makes use of an already-existing tunnel that can spontaneously move the indole moiety from the α catalytic pocket to the β one. Such behavior was completely disrupted in the simulation without the linker. In light of these results and the αβ dimer's low stability, the full-working TRPS single genes might be the result of a particular evolution. Considering the significant losses that causes to coffee plantations, our next course of action will be to use the TRPS to look for substances that can block tryptophan production and therefore control the disease.

摘要

色氨酸合酶(TRPS)是一种负责色氨酸生物合成的复杂酶。它存在于细菌、植物和真菌中,作为一个αββα异四聚体。尽管在细菌和植物中由独立的基因编码,但在真菌中,TRPS 是由一个单一基因产生的,该基因同时表达α和β实体,它们通过一个拉长的特殊片段连接。我们对 TRPS 进行了 1 微秒的全原子分子动力学模拟,以解决两个问题:(i)连接片段的作用和(ii)比较作用模式。由于没有实验结构,我们从同源建模开始我们的模拟。基于结果,似乎 TRPS 利用了一个已经存在的隧道,可以将吲哚部分从α催化口袋自发地转移到β口袋。这种行为在没有连接片段的模拟中完全被破坏了。鉴于这些结果和αβ二聚体的低稳定性,完整工作的 TRPS 单基因可能是特定进化的结果。考虑到这对咖啡种植园造成了重大损失,我们的下一步行动将是利用 TRPS 寻找可以阻断色氨酸生成的物质,从而控制这种疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9ff/10893352/b9cc8e5524c2/molecules-29-00756-g001.jpg

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