Transcriptional Regulation of the Genes Encoding Branched-Chain Aminotransferases in Kluyveromyces lactis and Lachancea kluyveri Is Independent of Chromatin Remodeling

James González, Héctor Quezada, J. C. Campero-Basaldua, E. Ramírez-González, L. Riego-Ruiz, Alicia González
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Abstract

In yeasts, the Leu3 transcriptional factor regulates the expression of genes encoding enzymes of the leucine biosynthetic pathway, in which the first committed step is catalyzed by α-isopropylmalate synthase (α-IPMS). This enzyme is feedback inhibited by leucine, and its product, α-isopropylmalate (α-IPM), constitutes a Leu3 co-activator. In S. cerevisiae, the ScBAT1 and ScBAT2 genes encode branched-chain aminotransferase isozymes. ScBAT1 transcriptional activation is dependent on the α-IPM concentration and independent of chromatin organization, while that of ScBAT2 is α-IPM-independent but dependent on chromatin organization. This study aimed at understanding whether chromatin remodeling determines the transcriptional regulation of orthologous KlBAT1 and LkBAT1 genes in Kluyveromyces lactis and Lachancea kluyveri under conditions in which the branched-chain amino acids are synthesized or degraded. The results indicate that, in K. lactis, KlBAT1 expression is reduced under catabolic conditions, while in L. kluyveri, LkBAT1 displays a constitutive expression profile. The chromatin organization of KlBAT1 and LkBAT1 promoters did not change, maintaining the Leu3-binding sites free of nucleosomes. Comparison of the α-IPMS sensitivities to feedback inhibition suggested that the main determinant of transcriptional activation of the KlBAT1 and LkBAT1 genes might be the availability of the α-IPM co-activator, as reported previously for the ScBAT1 gene of S. cerevisiae.
乳酸克鲁维酵母菌和克鲁维酵母菌中支链氨基转移酶编码基因的转录调控与染色质重塑无关
在酵母菌中,Leu3 转录因子调节亮氨酸生物合成途径中编码酶的基因的表达,其中第一个步骤是由α-异丙基丙二酸合成酶(α-IPMS)催化的。这种酶受到亮氨酸的反馈抑制,其产物α-异丙基丙二酸(α-IPM)是亮氨酸 3 的辅助激活剂。在 S. cerevisiae 中,ScBAT1 和 ScBAT2 基因编码支链氨基转移酶同工酶。ScBAT1 的转录激活依赖于 α-IPM 浓度,与染色质组织无关,而 ScBAT2 的转录激活与 α-IPM 无关,但依赖于染色质组织。本研究旨在了解在支链氨基酸合成或降解的条件下,染色质重塑是否决定了 Kluyveromyces lactis 和 Lachancea kluyveri 中同源的 KlBAT1 和 LkBAT1 基因的转录调控。结果表明,在 K. lactis 中,KlBAT1 的表达在分解代谢条件下会减少,而在 L. kluyveri 中,LkBAT1 则显示出组成型表达特征。KlBAT1 和 LkBAT1 启动子的染色质组织没有发生变化,Leu3 结合位点没有核小体。比较α-IPMS对反馈抑制的敏感性表明,KlBAT1和LkBAT1基因转录激活的主要决定因素可能是α-IPM共激活剂的可用性,正如之前报道的S. cerevisiae的ScBAT1基因一样。
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