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The Membrane Fluidity Sensor DesK of Bacillus subtilis Controls the Signal Decay of Its Cognate Response Regulator

机译:枯草芽孢杆菌的膜流动性传感器DesK控制其同源响应调节器的信号衰减

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摘要

The Bacillus subtilis DesK/DesR two-component system regulates the expression of the des gene coding for the Δ5 acyl lipid desaturase. It is believed that a decrease in membrane lipid fluidity activates the DesK/DesR signal transduction cascade, which results in synthesis of the Δ5 acyl lipid desaturase and desaturation of membrane phospholipids. These newly synthesized unsaturated fatty acids then act as negative signals of des transcription, thus generating a regulatory metabolic loop that optimizes membrane fluidity. We previously suggested that DesK is a bifunctional enzyme with both kinase and phosphatase activities that could assume different signaling states in response to changes in the fluidity of membrane lipids. However, no direct experimental evidence supported this proposed model. In this study, we show that the C-terminal fragment of the DesK protein (DesKC) indeed acts as an autokinase. Addition of the response regulator DesR to phosphorylated DesKC resulted in rapid transfer of the phosphoryl group to DesR. Further, phosphorylated DesR can be dephosphorylated in the presence of DesKC, thus demonstrating that the sensor kinase has the ability to covalently modify DesR through both kinase and phosphatase activities. We also present evidence that DesKC might be locked in a kinase-dominant state in vivo and that its activities are not affected either in vivo or in vitro by unsaturated fatty acids. These findings provide the first direct evidence that the transmembrane segments of DesK are essential to sense changes in membrane fluidity and for regulating the ratio of kinase to phosphatase activities of the cytoplasmic C-terminal domain.
机译:枯草芽孢杆菌DesK / DesR两组分系统调节编码Δ5酰基脂质去饱和酶的des基​​因的表达。据信,膜脂质流动性的降低激活了DesK / DesR信号转导级联反应,其导致Δ5酰基脂质去饱和酶的合成和膜磷脂的去饱和。这些新合成的不饱和脂肪酸然后充当去转录的负信号,从而产生调节代谢循环,从而优化膜的流动性。我们以前认为DesK是一种同时具有激酶和磷酸酶活性的双功能酶,可以响应膜脂流动性的变化而呈现不同的信号状态。但是,没有直接的实验证据支持此提议的模型。在这项研究中,我们表明DesK蛋白(DesKC)的C末端片段确实起着自身激酶的作用。将响应调节剂DesR添加到磷酸化的DesKC中导致磷酸基团快速转移到DesR。此外,磷酸化的DesR可在DesKC存在下被去磷酸化,从而证明传感器激酶具有通过激酶和磷酸酶活性共价修饰DesR的能力。我们还提供了证据,表明DesKC可能在体内被锁定为激酶主导状态,并且其活性在体内或体外均不受不饱和脂肪酸的影响。这些发现提供了第一个直接证据,即DesK的跨膜区段对于感知膜流动性的变化以及调节胞质C末端结构域的激酶与磷酸酶活性之比至关重要。

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