首页> 外文OA文献 >The Membrane Lipoprotein LppX of Paenibacillus sp. Strain W-61 Serves as a Molecular Chaperone for Xylanase of Glycoside Hydrolase Family 11 during Secretion across the Cytoplasmic Membrane▿ †
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The Membrane Lipoprotein LppX of Paenibacillus sp. Strain W-61 Serves as a Molecular Chaperone for Xylanase of Glycoside Hydrolase Family 11 during Secretion across the Cytoplasmic Membrane▿ †

机译:芽孢杆菌膜脂蛋白LppX。 W-61菌株在细胞质膜分泌过程中充当糖苷水解酶家族11的木聚糖酶的分子伴侣。

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摘要

Paenibacillus sp. strain W-61, which can utilize xylan as the sole source of carbon and energy, produces extracellular xylanases 1 and 3 (Xyn1 and Xyn3) and cell surface xylanase 5. In this study we found that lppX, immediately downstream of xyn1, encodes a lipoprotein located on the outer layer of the cytoplasmic membrane and that the LppX lipoprotein is essential for the secretion of active Xyn1 across the cytoplasmic membranes. In Escherichia coli, wild-type LppX was destined for the inner layer of the outer membrane. Mutant LppX(C19A), in which Cys-19, a possible lipomodification residue, is replaced with Ala, was located in the periplasm without being anchored to the membranes. Another mutant, LppX(S20D S21D), with substitutions of Asp for Ser-20 and Ser-21 (conversion to an Asp-Asp signal for sorting to the inner membrane), resided on the outer layer of the inner membrane, demonstrating that LppX has the sorting property of a lipoprotein. E. coli harboring both xyn1 and lppX secreted active Xyn1 into the periplasm. In contrast, E. coli carrying xyn1 alone failed to do so, accumulating inactive Xyn1 in the cytoplasmic membranes. Exogenous LppX(C19A) liberated the inactive Xyn1, which had been stagnating in the inner membrane, into the medium as an active enzyme. Thus, we propose that LppX is a novel type of lipoprotein that assists Xyn1 in making the proper fold necessary for traveling across the cytoplasmic membranes to be secreted as an active enzyme.
机译:芽孢杆菌W-61菌株可以利用木聚糖作为唯一的碳和能量来源,产生细胞外木聚糖酶1和3(Xyn1和Xyn3)和细胞表面木聚糖酶5。在这项研究中,我们发现xyn1下游的lppX编码一个脂蛋白位于细胞质膜的外层,而LppX脂蛋白对于跨细胞质膜分泌活性Xyn1至关重要。在大肠杆菌中,野生型LppX被指定用于外膜的内层。突变的LppX(C19A),其中Cys-19(一种可能的脂质修饰残基)被Ala取代,位于周质中而没有锚定在膜上。另一个突变体LppX(S20D S21D)驻留在内膜的外层,用Asp替代Ser-20和Ser-21(转换为Asp-Asp信号以分类到内膜),证明了LppX具有脂蛋白的分选特性。同时包含xyn1和lppX的大肠杆菌将活性Xyn1分泌到周质中。相反,仅携带xyn1的大肠杆菌未能做到这一点,从而在细胞质膜中积聚了失活的Xyn1。外源的LppX(C19A)将停滞在内膜中的非活性Xyn1作为活性酶释放到培养基中。因此,我们提出LppX是一种新型的脂蛋白,它可以协助Xyn1做出适当的折叠,以穿过细胞质膜作为活性酶分泌。

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