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在枯草芽孢杆菌中,一种两步运输途径使母细胞能够培育发育中的孢子。

A two-step transport pathway allows the mother cell to nurture the developing spore in Bacillus subtilis.

作者信息

Ramírez-Guadiana Fernando H, Meeske Alexander J, Rodrigues Christopher D A, Barajas-Ornelas Rocío Del Carmen, Kruse Andrew C, Rudner David Z

机构信息

Department of Microbiology and Immunobiology, Harvard Medical School, Boston, MA, United States of America.

Department of Biochemistry and Molecular Pharmacology, Harvard Medical School, Boston, MA, United States of America.

出版信息

PLoS Genet. 2017 Sep 25;13(9):e1007015. doi: 10.1371/journal.pgen.1007015. eCollection 2017 Sep.

Abstract

One of the hallmarks of bacterial endospore formation is the accumulation of high concentrations of pyridine-2,6-dicarboxylic acid (dipicolinic acid or DPA) in the developing spore. This small molecule comprises 5-15% of the dry weight of dormant spores and plays a central role in resistance to both wet heat and desiccation. DPA is synthesized in the mother cell at a late stage in sporulation and must be translocated across two membranes (the inner and outer forespore membranes) that separate the mother cell and forespore. The enzymes that synthesize DPA and the proteins required to translocate it across the inner forespore membrane were identified over two decades ago but the factors that transport DPA across the outer forespore membrane have remained mysterious. Here, we report that SpoVV (formerly YlbJ) is the missing DPA transporter. SpoVV is produced in the mother cell during the morphological process of engulfment and specifically localizes in the outer forespore membrane. Sporulating cells lacking SpoVV produce spores with low levels of DPA and cells engineered to express SpoVV and the DPA synthase during vegetative growth accumulate high levels of DPA in the culture medium. SpoVV resembles concentrative nucleoside transporters and mutagenesis of residues predicted to form the substrate-binding pocket supports the idea that SpoVV has a similar structure and could therefore function similarly. These findings provide a simple two-step transport mechanism by which the mother cell nurtures the developing spore. DPA produced in the mother cell is first translocated into the intermembrane space by SpoVV and is then imported into the forespore by the SpoVA complex. This pathway is likely to be broadly conserved as DPA synthase, SpoVV, and SpoVA proteins can be found in virtually all endospore forming bacteria.

摘要

细菌芽孢形成的一个标志是在发育中的芽孢中积累高浓度的吡啶 -2,6 - 二羧酸(二吡啶甲酸或DPA)。这种小分子占休眠芽孢干重的5 - 15%,在抵抗湿热和干燥方面起着核心作用。DPA在芽孢形成后期在母细胞中合成,并且必须穿过分隔母细胞和前芽孢的两层膜(内膜和外芽孢膜)。二十多年前就已鉴定出合成DPA的酶以及将其转运穿过前芽孢内膜所需的蛋白质,但将DPA转运穿过外芽孢膜的因子仍然是个谜。在这里,我们报告SpoVV(以前称为YlbJ)是缺失的DPA转运蛋白。SpoVV在吞噬的形态学过程中在母细胞中产生,并特异性地定位于外芽孢膜。缺乏SpoVV的芽孢形成细胞产生的芽孢中DPA水平较低,而在营养生长期间经过工程改造以表达SpoVV和DPA合酶的细胞在培养基中积累高水平的DPA。SpoVV类似于浓缩核苷转运蛋白,对预测形成底物结合口袋的残基进行诱变支持了SpoVV具有类似结构并因此可能具有类似功能的观点。这些发现提供了一种简单的两步转运机制,通过该机制母细胞培育发育中的芽孢。在母细胞中产生的DPA首先由SpoVV转运到膜间隙,然后由SpoVA复合物导入前芽孢。由于几乎在所有形成芽孢的细菌中都能发现DPA合酶、SpoVV和SpoVA蛋白,所以这条途径可能广泛保守。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03ed/5629000/a46b3fdfda9c/pgen.1007015.g001.jpg

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