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细菌中核糖体分配的调控扰动通过在适应能力上的权衡重塑生长蛋白质组。

Regulatory perturbations of ribosome allocation in bacteria reshape the growth proteome with a trade-off in adaptation capacity.

作者信息

Hidalgo David, Martínez-Ortiz César A, Palsson Bernhard O, Jiménez José I, Utrilla José

机构信息

Systems and Synthetic Biology Program, Centre for Genomic Sciences, Universidad Nacional Autónoma de México, Campus Morelos, Cuernavaca, México.

Department of Bioengineering, University of California San Diego, La Jolla, CA, USA.

出版信息

iScience. 2022 Feb 7;25(3):103879. doi: 10.1016/j.isci.2022.103879. eCollection 2022 Mar 18.

Abstract

Bacteria regulate their cellular resource allocation to enable fast growth-adaptation to a variety of environmental niches. We studied the ribosomal allocation, growth, and expression profiles of two sets of fast-growing mutants of K-12 MG1655. Mutants with only three of the seven copies of ribosomal RNA operons grew faster than the wild-type strain in minimal media and show similar phenotype to previously studied fast-growing mutants. Comparing these two different regulatory perturbations (rRNA promoters or mutations), we show how they reshape the proteome for growth with a concomitant fitness cost. The fast-growing mutants shared downregulation of hedging functions and upregulated growth functions. They showed longer diauxic shifts and reduced activity of gluconeogenic promoters during glucose-acetate shifts, suggesting reduced availability of the RNA polymerase for expressing hedging proteome. These results show that the regulation of ribosomal allocation underlies the growth/hedging phenotypes obtained from laboratory evolution experiments.

摘要

细菌调节其细胞资源分配,以实现快速生长并适应各种环境生态位。我们研究了K-12 MG1655两组快速生长突变体的核糖体分配、生长和表达谱。核糖体RNA操纵子七个拷贝中只有三个拷贝的突变体在基本培养基中比野生型菌株生长得更快,并且表现出与先前研究的快速生长突变体相似的表型。比较这两种不同的调控扰动(rRNA启动子或突变),我们展示了它们如何以伴随的适应性成本重塑蛋白质组以促进生长。快速生长的突变体共同下调了避险功能并上调了生长功能。它们在葡萄糖-乙酸盐转换期间显示出更长的二次生长转变和糖异生启动子活性降低,表明用于表达避险蛋白质组的RNA聚合酶可用性降低。这些结果表明,核糖体分配的调节是实验室进化实验中获得的生长/避险表型的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa34/8866900/65527f0e8330/fx1.jpg

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