Centre for Biotechnology, Anna University, Chennai 600 025, Tamil Nadu, India.
J Mol Evol. 2010 Apr;70(4):359-70. doi: 10.1007/s00239-010-9334-2. Epub 2010 Mar 24.
Bacterial lipoproteins, characterized by the N-terminal N-acyl S-diacylglyceryl Cysteine, are key membrane proteins in bacterial homeostasis. It is generally thought that during the modification lipoprotein precursors are translocated via the Sec-machinery in an unfolded state. The recent discovery of twin-arginine translocation (TAT) machinery, meant for exporting folded-proteins, and the presence of TAT-type signal sequences in co-factor-containing (hence already folded) lipoproteins, prompted us to investigate its role and significance in lipoprotein biosynthesis. We systematically analyzed 696 prokaryotic genomes using an algorithm based on DOLOP and TatP rules to predict TAT-pathway-dependent lipoprotein substrates. Occurrence of the deduced TAT-pathway-dependent lipoprotein substrates in relation to genome size, presence or absence of TAT machinery, and extent of its usage for lipoprotein export and habitat types revealed that unlike the host-obligates, the free-living prokaryotes in complex hostile environments (e.g., soil) depend more on TAT-exported lipoproteins. Functional classification of the predicted TAT-dependent lipoproteins revealed enrichment in hydrolases and oxido-reductases, which are fast-folding and co-factor-containing proteins. The role of the TAT pathway in the export of folded-lipoproteins and in niche-specific adaptation for survival has important implications not only in lipoprotein biosynthesis, but also for protein and metabolic engineering applications.
细菌脂蛋白以 N 端 N-酰基 S-二酰基甘油半胱氨酸为特征,是细菌内稳态的关键膜蛋白。一般认为,在修饰脂蛋白前体时,它们以未折叠状态通过 Sec 机制易位。最近发现的双精氨酸易位(TAT)机制是为了输出折叠蛋白,并且在含有辅助因子(因此已经折叠)的脂蛋白中存在 TAT 型信号序列,这促使我们研究它在脂蛋白生物合成中的作用和意义。我们使用基于 DOLOP 和 TatP 规则的算法系统地分析了 696 个原核基因组,以预测 TAT 依赖性脂蛋白底物。推断的 TAT 依赖性脂蛋白底物的出现与基因组大小、TAT 机制的存在与否以及其用于脂蛋白输出的程度和栖息地类型有关,表明与宿主必需的细菌不同,复杂恶劣环境(例如土壤)中的自由生活原核生物更依赖于 TAT 输出的脂蛋白。预测的 TAT 依赖性脂蛋白的功能分类显示水解酶和氧化还原酶的富集,这些酶是快速折叠和含有辅助因子的蛋白质。TAT 途径在折叠脂蛋白的输出和特定生态位适应生存中的作用不仅对脂蛋白生物合成具有重要意义,而且对蛋白质和代谢工程应用也具有重要意义。