首页> 外文期刊>Applied Microbiology >Cytophaga hutchinsoniigldN, Encoding a Core Component of the Type IX Secretion System, Is Essential for Ion Assimilation, Cellulose Degradation, and Cell Motility
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Cytophaga hutchinsoniigldN, Encoding a Core Component of the Type IX Secretion System, Is Essential for Ion Assimilation, Cellulose Degradation, and Cell Motility

机译:Cytophaga Hutchinsoniigldd,编码IX型分泌系统的核心组分,对于离子同化,纤维素降解和细胞运动是必不可少的

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The type IX secretion system (T9SS), which is involved in pathogenicity, motility, and utilization of complex biopolymers, is a novel protein secretion system confined to the phylum Bacteroidetes . Cytophaga hutchinsonii , a common cellulolytic soil bacterium belonging to the phylum Bacteroidetes , can rapidly digest crystalline cellulose using a novel strategy. In this study, the deletion mutant of chu_0174 ( gldN ) was obtained using PY6 medium supplemented with Stanier salts. GldN was verified to be a core component of C. hutchinsonii T9SS, and is indispensable for cellulose degradation, motility, and secretion of C-terminal domain (CTD) proteins. Notably, the Δ gldN mutant showed significant growth defects in Ca~(2+)- and Mg~(2+)-deficient media. These growth defects could be relieved by the addition of Ca~(2+) or Mg~(2+). The intracellular concentrations of Ca~(2+) and Mg~(2+) were markedly reduced in Δ gldN . These results demonstrated that GldN is essential for the acquisition of trace amounts of Ca~(2+) and Mg~(2+), especially for Ca~(2+). Moreover, an outer membrane efflux protein, CHU_2807, which was decreased in abundance on the outer membrane of Δ gldN , is essential for normal growth in PY6 medium. The reduced intracellular accumulation of Ca~(2+) and Mg~(2+) in the Δ 2807 mutant indicated that CHU_2807 is involved in the uptake of trace amounts of Ca~(2+) and Mg~(2+). This study provides insights into the role of T9SS in metal ion assimilation in C. hutchinsonii .IMPORTANCE The widespread Gram-negative bacterium Cytophaga hutchinsonii uses a novel but poorly understood strategy to utilize crystalline cellulose. Recent studies showed that a T9SS exists in C. hutchinsonii and is involved in cellulose degradation and motility. However, the main components of the C. hutchinsonii T9SS and their functions are still unclear. Our study characterized the function of GldN, which is a core component of the T9SS. GldN was proved to play vital roles in cellulose degradation and cell motility. Notably, GldN is essential for the acquisition of Ca~(2+) and Mg~(2+) ions under Ca~(2+)- and Mg~(2+)-deficient conditions, revealing a link between the T9SS and the metal ion transport system. The outer membrane abundance of CHU_2807, which is essential for Ca~(2+) and Mg~(2+) uptake in PY6 medium, was affected by the deletion of GldN. This study demonstrated that the C. hutchinsonii T9SS has extensive functions, including cellulose degradation, motility, and metal ion assimilation, and contributes to further understanding of the function of the T9SS in the phylum Bacteroidetes .
机译:涉及复合生物聚合物的致病性,动力和利用的IX型分泌系统(T9S)是局限于Phylum Bacteroidetes的新型蛋白质分泌系统。 Cytophaga Hutchinsonii,一种属于Bacteroidetes的常见的纤维素分解土壤,可以使用新的策略快速消化晶体纤维素。在该研究中,使用补充有甾体盐的PY6培养基获得CHU_0174(GLDN)的缺失突变体。 GLDN被验证为C. Hutchinsonii T9SS的核心成分,对于C-末端结构蛋白(CTD)蛋白的纤维素降解,运动和分泌是必不可少的。值得注意的是,δGLDN突变体在Ca〜(2 +)和Mg〜(2 +)缺陷介质中显示出显着的生长缺陷。通过添加Ca〜(2+)或mg〜(2+)可以缓解这些生长缺陷。在δGLDN中显着降低了Ca〜(2+)和Mg〜(2+)的细胞内浓度。这些结果表明,GLDN对于采集痕量的Ca〜(2+)和Mg〜(2+)至关重要,特别是对于Ca〜(2+)。此外,在ΔGLDN的外膜上富裕地降低的外膜流速蛋白,CHU_2807对PY6培养基的正常生长至关重要。 δ2807突变体中的Ca〜(2+)和Mg〜(2+)的细胞内积聚的降低表明CHU_2807参与了痕量的Ca〜(2+)和Mg〜(2+)的摄取。本研究提供了对T9SS在C. Hutchinsonii的金属离子同化中的作用的见解.importance普遍的革兰氏阴性细菌细胞素细胞石酮使用新颖但不太理解的策略来利用结晶纤维素。最近的研究表明,C. Hutchinsonii中存在T9S,并且参与纤维素降解和运动。然而,C. Hutchinsonii T9SS及其功能的主要组成部分仍不清楚。我们的研究表征了GLDN的功能,这是T9SS的核心组件。证明GLDN在纤维素降解和细胞运动中发挥重要作用。值得注意的是,GLDN对于获取Ca〜(2+)和Mg〜(2+)离子的Ca〜(2 +) - 和Mg〜(2 +)条件的条件是必不可少的,揭示T9S和T9S之间的联系金属离子运输系统。 CHU_2807的外膜丰度为PY6培养基中的CA〜(2+)和Mg〜(2+)的缺点是缺失GLDN的影响。该研究表明,C. Hutchinsonii T9SS具有广泛的功能,包括纤维素降解,运动和金属离子同化,并有助于进一步了解T9SS在Phylum Bacteroidets中的功能。

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