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THI1, a protein involved in the biosynthesis of thiamin in Arabidopsis thaliana: structural analysis of THI1(A140V) mutant

机译:THI1,一种参与拟南芥中硫胺素生物合成的蛋白质:THI1(A140V)突变体的结构分析

摘要

In eukaryotes, there are still steps of the vitamin B1 biosynthetic pathway not completely understood. In Arabidopsis thaliana, THI1 protein has been associatedwith the synthesis of the thiazole ring, a finding supported by the identification of a thiamine pyrophosphate (TPP)-like compound in its structure. Here, we investigated THI1 and its mutant THI1(A140V), responsible for the thiamin auxotrophy in a A. thaliana mutant line, aiming to clarify the impact of this mutation in the stability and activity of THI1. Recently, the THI1 orthologue (THI4) was revealed to be responsible for the donation of the sulfur atom from a cysteine residue to the thiazole ring in the thiamine intermediate. In this context, we carried out a cysteine quantification in THI1 and THI1(A140V) using electron spin resonance (ESR). These data showed that THI1(A140V) contains more sulfur-containing cysteines than THI1, indicating that the function as a sulfur donor is conserved, but the rate of donation reaction is somehowaffected. Also, the bound compounds were isolated from both proteins and are present in different amounts in each protein. Unfolding studies presented differences in melting temperatures and also in the concentration of guanidine at which half of the protein unfolds, thus showing that THI1(A140V) has its conformational stability affected by themutation. Hence, despite keeping its function in the early steps during the synthesis of TPP precursor, our studies have shown a decrease in the THI1(A140V) stability,which might be slowing down the biological activity of the mutant, and thus contributing to thiamin auxotrophy.
机译:在真核生物中,仍有一些维生素B1生物合成途径的步骤尚未完全了解。在拟南芥中,THI1蛋白与噻唑环的合成有关,这一发现得到了其结构中硫胺素焦磷酸盐(TPP)样化合物的鉴定的支持。在这里,我们调查了THI1及其突变体THI1(A140V),该基因负责拟南芥突变体系中的硫胺素营养缺陷型,旨在阐明该突变对THI1稳定性和活性的影响。最近,THI1直向同源物(THI4)被发现是硫胺素中间体中半胱氨酸残基向噻唑环上提供硫原子的原因。在这种情况下,我们使用电子自旋共振(ESR)在THI1和THI1(A140V)中进行了半胱氨酸定量。这些数据表明,THI1(A140V)比THI1含有更多的含硫半胱氨酸,表明保守了作为硫供体的功能,但是捐赠反应的速度受到了一定影响。同样,从两种蛋白质中分离出结合的化合物,并且每种蛋白质中存在的化合物数量不同。展开研究显示了融化温度以及一半蛋白质展开时的胍浓度的差异,因此表明THI1(A140V)的构象稳定性受突变影响。因此,尽管在TPP前体合成的早期阶段中保持了其功能,但我们的研究表明,THI1(A140V)稳定性下降,这可能减慢了突变体的生物学活性,从而导致了硫胺素营养缺陷。

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