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罗氏菌 PD630 肝素结合血凝素同源物 TadA 介导脂滴形成。

The Rhodococcus opacus PD630 heparin-binding hemagglutinin homolog TadA mediates lipid body formation.

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

Appl Environ Microbiol. 2010 Nov;76(21):7217-25. doi: 10.1128/AEM.00985-10. Epub 2010 Sep 17.

Abstract

Generally, prokaryotes store carbon as polyhydroxyalkanoate, starch, or glycogen. The Gram-positive actinomycete Rhodococcus opacus strain PD630 is noteworthy in that it stores carbon in the form of triacylglycerol (TAG). Several studies have demonstrated that R. opacus PD630 can accumulate up to 76% of its cell dry weight as TAG when grown under nitrogen-limiting conditions. While this process is well studied, the underlying molecular and biochemical mechanisms leading to TAG biosynthesis and subsequent storage are poorly understood. We designed a high-throughput genetic screening to identify genes and their products required for TAG biosynthesis and storage in R. opacus PD630. We identified a gene predicted to encode a putative heparin-binding hemagglutinin homolog, which we have termed tadA (triacylglycerol accumulation deficient), as being important for TAG accumulation. Kinetic studies of TAG accumulation in both the wild-type (WT) and mutant strains demonstrated that the tadA mutant accumulates 30 to 40% less TAG than the parental strain (WT). We observed that lipid bodies formed by the mutant strain were of a different size and shape than those of the WT. Characterization of TadA demonstrated that the protein is capable of binding heparin and of agglutinating purified lipid bodies. Finally, we observed that the TadA protein localizes to lipid bodies in R. opacus PD630 both in vivo and in vitro. Based on these data, we hypothesize that the TadA protein acts to aggregate small lipid bodies, found in cells during early stages of lipid storage, into larger lipid bodies and thus plays a key role in lipid body maturation in R. opacus PD630.

摘要

一般来说,原核生物将碳以聚羟基烷酸酯、淀粉或糖原的形式储存。革兰氏阳性放线菌红球菌属菌株 PD630 值得注意的是,它以三酰基甘油 (TAG) 的形式储存碳。多项研究表明,当在氮限制条件下生长时,R. opacus PD630 可以积累高达其细胞干重的 76%作为 TAG。虽然这个过程已经得到了很好的研究,但导致 TAG 生物合成和随后储存的潜在分子和生化机制还知之甚少。我们设计了一种高通量遗传筛选方法,以鉴定 R. opacus PD630 中 TAG 生物合成和储存所需的基因及其产物。我们鉴定了一个编码肝素结合血凝素同源物的基因,我们称之为 tadA(三酰基甘油积累缺陷),它对 TAG 积累很重要。在野生型(WT)和突变株中的 TAG 积累动力学研究表明,突变株比亲本株(WT)积累的 TAG 少 30%到 40%。我们观察到突变株形成的脂滴的大小和形状与 WT 不同。TadA 的特性表明,该蛋白能够结合肝素并凝集纯化的脂滴。最后,我们观察到 TadA 蛋白在 R. opacus PD630 中的脂滴中定位于体内和体外。基于这些数据,我们假设 TadA 蛋白的作用是将细胞中早期脂质储存阶段发现的小脂滴聚集到更大的脂滴中,从而在 R. opacus PD630 中的脂滴成熟中发挥关键作用。

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