Mansilla María C, Albanesi Daniela, Cybulski Larisa E, de Mendoza Diego
Institute of Molecular and Cellular Biology of Rosario, CONICET- National Univesity of Rosario, Suipacha521, S2002LKR Rosario, Argentina.
Ann Hepatol. 2005 Jul-Sep;4(3):216-7.
Both prokaryotes and eukaryotes respond to a decrease in temperature with the expression of a specific subset of proteins. We are investigating how Bacillus subtilis cells sense and transduce low-temperature signals to adjust its gene expression. One important step has been accomplished in the dissection of a novel pathway for the adjustment of unsaturated fatty acid synthesis in B.subtilis, termed the Des pathway. It responds to a decrease in growth temperature by enhancing the expression of the des gene, coding for an acyl-lipid desaturase. The Des pathway is uniquely and stringently regulated by a tw-component system composed of a membrane-associated kinase, DesK, and a soluble transcriptional activator, DesR. The temperature sensing ability of the DesK protein is regulated by the extent of disorder within the membrane lipid bilayer. In this work, we present the mechanism by which the sensor protein DesK controls the signal decay of its cognate partner, DesR, and how this response regulator activates transcription of its target promoter. The results of these analysis will be presented and discussed in the context of transcriptional regulation of membrane fluidity homeostasis.
原核生物和真核生物都会通过表达特定的蛋白质子集来应对温度下降。我们正在研究枯草芽孢杆菌细胞如何感知和转导低温信号以调节其基因表达。在剖析枯草芽孢杆菌中一种用于调节不饱和脂肪酸合成的新途径(称为Des途径)方面,已经完成了重要的一步。它通过增强编码酰基脂质去饱和酶的des基因的表达来响应生长温度的降低。Des途径由一个由膜相关激酶DesK和可溶性转录激活因子DesR组成的双组分系统独特且严格地调控。DesK蛋白的温度感应能力受膜脂双层内无序程度的调节。在这项工作中,我们展示了传感蛋白DesK控制其同源伴侣DesR信号衰减的机制,以及这种应答调节因子如何激活其靶启动子的转录。这些分析结果将在膜流动性稳态的转录调控背景下进行展示和讨论。