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确定控制绿藻微小原甲藻蛋白质组的转录后程序的各个方面。

Identifying Aspects of the Post-Transcriptional Program Governing the Proteome of the Green Alga Micromonas pusilla.

作者信息

Waltman Peter H, Guo Jian, Reistetter Emily Nahas, Purvine Samuel, Ansong Charles K, van Baren Marijke J, Wong Chee-Hong, Wei Chia-Lin, Smith Richard D, Callister Stephen J, Stuart Joshua M, Worden Alexandra Z

机构信息

University of California at Santa Cruz, Baskin School of Engineering, Santa Cruz, California, 95064, United States of America.

Monterey Bay Aquarium Research Institute, Moss Landing, California, United States of America.

出版信息

PLoS One. 2016 Jul 19;11(7):e0155839. doi: 10.1371/journal.pone.0155839. eCollection 2016.

Abstract

Micromonas is a unicellular motile alga within the Prasinophyceae, a green algal group that is related to land plants. This picoeukaryote (<2 μm diameter) is widespread in the marine environment but is not well understood at the cellular level. Here, we examine shifts in mRNA and protein expression over the course of the day-night cycle using triplicated mid-exponential, nutrient replete cultures of Micromonas pusilla CCMP1545. Samples were collected at key transition points during the diel cycle for evaluation using high-throughput LC-MS proteomics. In conjunction, matched mRNA samples from the same time points were sequenced using pair-ended directional Illumina RNA-Seq to investigate the dynamics and relationship between the mRNA and protein expression programs of M. pusilla. Similar to a prior study of the marine cyanobacterium Prochlorococcus, we found significant divergence in the mRNA and proteomics expression dynamics in response to the light:dark cycle. Additionally, expressional responses of genes and the proteins they encoded could also be variable within the same metabolic pathway, such as we observed in the oxygenic photosynthesis pathway. A regression framework was used to predict protein levels from both mRNA expression and gene-specific sequence-based features. Several features in the genome sequence were found to influence protein abundance including codon usage as well as 3' UTR length and structure. Collectively, our studies provide insights into the regulation of the proteome over a diel cycle as well as the relationships between transcriptional and translational programs in the widespread marine green alga Micromonas.

摘要

微小绿藻是绿藻纲中的一种单细胞游动藻类,绿藻纲是与陆地植物相关的一个绿藻类群。这种微型真核生物(直径<2μm)在海洋环境中广泛分布,但在细胞水平上尚未得到充分了解。在这里,我们使用三份处于指数中期、营养充足的微小绿藻CCMP1545培养物,研究了昼夜循环过程中mRNA和蛋白质表达的变化。在昼夜循环的关键转换点采集样本,使用高通量液相色谱 - 质谱蛋白质组学进行评估。同时,对同一时间点的匹配mRNA样本进行双端定向Illumina RNA测序,以研究微小绿藻mRNA和蛋白质表达程序之间的动态变化及关系。与之前对海洋蓝细菌原绿球藻的研究类似,我们发现mRNA和蛋白质组表达动态对光暗循环有显著差异。此外,基因及其编码蛋白质的表达反应在同一代谢途径中也可能不同,比如我们在有氧光合作用途径中观察到的那样。我们使用一个回归框架,根据mRNA表达和基于基因特异性序列的特征来预测蛋白质水平。发现基因组序列中的几个特征会影响蛋白质丰度,包括密码子使用以及3'非翻译区的长度和结构。总的来说,我们的研究为广泛分布的海洋绿藻微小绿藻在昼夜循环中蛋白质组的调控以及转录和翻译程序之间的关系提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66f1/4951065/5ec8c13c1440/pone.0155839.g001.jpg

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