Zallot Rémi, Yazdani Mohammad, Goyer Aymeric, Ziemak Michael J, Guan Jiahn-Chou, McCarty Donald R, de Crécy-Lagard Valérie, Gerdes Svetlana, Garrett Timothy J, Benach Jordi, Hunt John F, Shintani David K, Hanson Andrew D
*Microbiology and Cell Science Department, University of Florida, Gainesville, FL 32611, U.S.A.
†Department of Biochemistry and Molecular Biology, University of Nevada, Reno, NV 89557, U.S.A.
Biochem J. 2014 Oct 1;463(1):145-55. doi: 10.1042/BJ20140522.
The TenA protein family occurs in prokaryotes, plants and fungi; it has two subfamilies, one (TenA_C) having an active-site cysteine, the other (TenA_E) not. TenA_C proteins participate in thiamin salvage by hydrolysing the thiamin breakdown product amino-HMP (4-amino-5-aminomethyl-2-methylpyrimidine) to HMP (4-amino-5-hydroxymethyl-2-methylpyrimidine); the function of TenA_E proteins is unknown. Comparative analysis of prokaryote and plant genomes predicted that (i) TenA_E has a salvage role similar to, but not identical with, that of TenA_C and (ii) that TenA_E and TenA_C also have non-salvage roles since they occur in organisms that cannot make thiamin. Recombinant Arabidopsis and maize TenA_E proteins (At3g16990, GRMZM2G080501) hydrolysed amino-HMP to HMP and, far more actively, hydrolysed the N-formyl derivative of amino-HMP to amino-HMP. Ablating the At3g16990 gene in a line with a null mutation in the HMP biosynthesis gene ThiC prevented its rescue by amino-HMP. Ablating At3g16990 in the wild-type increased sensitivity to paraquat-induced oxidative stress; HMP overcame this increased sensitivity. Furthermore, the expression of TenA_E and ThiC genes in Arabidopsis and maize was inversely correlated. These results indicate that TenA_E proteins mediate amidohydrolase and aminohydrolase steps in the salvage of thiamin breakdown products. As such products can be toxic, TenA_E proteins may also pre-empt toxicity.
TenA蛋白家族存在于原核生物、植物和真菌中;它有两个亚家族,一个(TenA_C)有一个活性位点半胱氨酸,另一个(TenA_E)没有。TenA_C蛋白通过将硫胺素分解产物氨基-HMP(4-氨基-5-氨甲基-2-甲基嘧啶)水解为HMP(4-氨基-5-羟甲基-2-甲基嘧啶)参与硫胺素补救;TenA_E蛋白的功能尚不清楚。对原核生物和植物基因组的比较分析预测:(i)TenA_E具有与TenA_C类似但不完全相同的补救作用;(ii)TenA_E和TenA_C也具有非补救作用,因为它们存在于不能合成硫胺素的生物体中。重组拟南芥和玉米TenA_E蛋白(At3g16990,GRMZM2G080501)将氨基-HMP水解为HMP,并且更活跃地将氨基-HMP的N-甲酰基衍生物水解为氨基-HMP。在HMP生物合成基因ThiC发生无效突变的品系中敲除At3g16990基因可阻止其被氨基-HMP挽救。在野生型中敲除At3g16990会增加对百草枯诱导的氧化应激的敏感性;HMP可克服这种增加的敏感性。此外,拟南芥和玉米中TenA_E和ThiC基因的表达呈负相关。这些结果表明,TenA_E蛋白在硫胺素分解产物的补救过程中介导酰胺水解酶和氨基水解酶步骤。由于这些产物可能有毒,TenA_E蛋白也可能预防毒性。