Fosses Aurélie, Franche Nathalie, Parsiegla Goetz, Denis Yann, Maté Maria, de Philip Pascale, Fierobe Henri-Pierre, Perret Stéphanie
Campus Scolaire de Coulommiers, Coulommiers, France.
Aix Marseille Univ, CNRS, LCB, Marseille, France.
Microorganisms. 2023 Jul 1;11(7):1732. doi: 10.3390/microorganisms11071732.
In , cellobiose is imported by the CuaABC ATP-binding cassette transporter containing the solute-binding protein (SBP) CuaA and is further degraded in the cytosol by the cellobiose phosphorylase CbpA. The genes encoding these proteins have been shown to be essential for cellobiose and cellulose utilization. Here, we show that a second SBP (CuaD), whose gene is adjacent to two genes encoding a putative two-component regulation system (CuaSR), forms a three-component system with CuaS and CuaR. Studies of mutant and recombinant strains of have indicated that is important for the growth of strains on cellobiose and cellulose. Furthermore, the results of our RT-qPCR experiments suggest that both the three (CuaDSR)- and the two (CuaSR)-component systems are able to perceive the cellobiose signal. However, the strain producing the three-component system is more efficient in its cellobiose and cellulose utilization. As CuaD binds to CuaS, we propose an in-silico model of the complex made up of two extracellular domains of CuaS and two of CuaD. CuaD allows microorganisms to detect very low concentrations of cellobiose due to its high affinity and specificity for this disaccharide, and together with CuaSR, it triggers the expression of the - genes involved in cellodextrins uptake.
在[具体微生物名称未给出]中,纤维二糖由含有溶质结合蛋白(SBP)CuaA的CuaABC ATP结合盒转运体导入,并在胞质溶胶中由纤维二糖磷酸化酶CbpA进一步降解。已证明编码这些蛋白质的基因对于纤维二糖和纤维素的利用至关重要。在此,我们表明第二个SBP(CuaD),其基因与编码推定的双组分调节系统(CuaSR)的两个基因相邻,与CuaS和CuaR形成一个三组分系统。对[具体微生物名称未给出]的突变体和重组菌株的研究表明,[具体微生物名称未给出]对于菌株在纤维二糖和纤维素上的生长很重要。此外,我们的RT-qPCR实验结果表明,三组分系统(CuaDSR)和双组分系统(CuaSR)都能够感知纤维二糖信号。然而,产生三组分系统的菌株在纤维二糖和纤维素利用方面效率更高。由于CuaD与CuaS结合,我们提出了一个由CuaS的两个细胞外结构域和CuaD的两个细胞外结构域组成的复合物的计算机模拟模型。CuaD由于其对这种二糖的高亲和力和特异性,使微生物能够检测到极低浓度的纤维二糖,并且与CuaSR一起,它触发了参与纤维糊精摄取的[具体微生物名称未给出]基因的表达。