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A previously uncharacterized tetratricopeptide-repeat-containing protein is involved in cell envelope function in Rhizobium leguminosarum

机译:以前未鉴定的四肽重复序列蛋白参与豆科根瘤菌的细胞包膜功能

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Rhizobium leguminosarum is a soil bacterium that is an intracellular symbiont of leguminous plants through the formation of nitrogen-fixing root nodules. Due to the changing environments that rhizobia encounter, the cell is often faced with a variety of cell altering stressors that can compromise the cell envelope integrity. A previously uncharacterized operon (RL3499–RL3502) has been linked to proper cell envelope function, and mutants display pleiotropic phenotypes including an inability to grow on peptide-rich media. In order to identify functional partners to the operon, suppressor mutants capable of growth on complex, peptide-rich media were isolated. A suppressor mutant of a non-polar mutation to RL3500 was chosen for further characterization. Transposon mutagenesis, screening for loss of the suppressor phenotype, led to the identification of a Tn5 insertion in an uncharacterized tetratricopeptide-repeat-containing protein RL0936. Furthermore, RL0936 had a 3.5-fold increase in gene expression in the suppressor strain when compared with the WT and a 1.5-fold increase in the original RL3500 mutant. Mutation of RL0936 decreased desiccation tolerance and lowered the ability to form biofilms when compared with the WT strain. This work has identified a potential interaction between RL0936 and the RL3499–RL3502 operon that is involved in cell envelope development in R. leguminosarum, and has described phenotypic activities to a previously uncharacterized conserved hypothetical gene.
机译:豆科根瘤菌是一种土壤细菌,通过固氮根瘤的形成,是豆科植物的细胞内共生体。由于根瘤菌遇到的变化的环境,细胞经常面临各种细胞改变应激源,这些应激源可能会损害细胞包膜的完整性。先前未描述的操纵子(RL3499–RL3502)与适当的细胞包膜功能有关,突变体表现出多效性表型,包括无法在富含肽的培养基上生长。为了鉴定操纵子的功能伴侣,分离了能够在复杂的,富含肽的培养基上生长的抑制突变体。选择了针对RL3500的非极性突变的抑制突变体用于进一步表征。转座子诱变,筛选抑制表型的丢失,导致鉴定出未表征的含四肽重复序列的蛋白质RL0936中的Tn5插入。此外,与野生型相比,RL0936在抑制菌株中的基因表达增加了3.5倍,而原始RL3500突变体增加了1.5倍。与WT菌株相比,RL0936突变降低了其脱水耐性并降低了形成生物膜的能力。这项工作已经确定了RL0936和RL3499–RL3502操纵子之间的潜在相互作用,该操纵子参与了豆科植物念珠菌的细胞包膜发育,并描述了以前未表征的保守假设基因的表型活性。

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