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Transcriptome analysis of Δmig1Δmig2 mutant reveals their roles in methanol catabolism, peroxisome biogenesis and autophagy in methylotrophic yeast Pichia pastoris

Overview of attention for article published in Genes & Genomics, December 2017
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Title
Transcriptome analysis of Δmig1Δmig2 mutant reveals their roles in methanol catabolism, peroxisome biogenesis and autophagy in methylotrophic yeast Pichia pastoris
Published in
Genes & Genomics, December 2017
DOI 10.1007/s13258-017-0641-5
Pubmed ID
Authors

Lei Shi, Xiaolong Wang, Jinjia Wang, Ping Zhang, Fei Qi, Menghao Cai, Yuanxing Zhang, Xiangshan Zhou

Abstract

Two catabolite repressor genes (MIG1 and MIG2) were previously identified in Pichia pastoris, and the derepression of alcohol oxidase (AOX) expression was realized in Δmig1 or Δmig1Δmig2 mutants grown in glycerol, but not in glucose. In this study, genome-wide RNA-seq analysis of Δmig1Δmig2 and the wild-type strain grown in glycerol revealed that the expression of numerous genes was greatly altered. Nearly 7% (357 genes) of approximately 5276 genes annotated in P. pastoris were significantly upregulated, with at least a two-fold differential expression in Δmig1Δmig2; the genes were mainly related to cell metabolism. Approximately 23% (1197 genes) were significantly downregulated; these were mainly correlated with the physiological characteristics of the cell. The methanol catabolism and peroxisome biogenesis pathways were remarkably enhanced, and the genes AOX1 and AOX2 were upregulated higher than 30-fold, which was consistent with the experimental results of AOX expression. The Mig proteins had a slight effect on autophagy when cells were grown in glycerol. The expression analysis of transcription factors showed that deletion of MIG1 and MIG2 significantly upregulated the binding of an essential transcription activator, Mit1p, with the AOX1 promoter, which suggested that Mig proteins might regulate the AOX1 promoter through the regulation of Mit1p. This work provides a reference for the further exploration of the methanol induction and catabolite repression mechanisms of AOX expression in methylotrophic yeasts.

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 51 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 51 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 12 24%
Student > Master 10 20%
Researcher 5 10%
Student > Bachelor 4 8%
Student > Postgraduate 3 6%
Other 5 10%
Unknown 12 24%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 21 41%
Agricultural and Biological Sciences 10 20%
Immunology and Microbiology 2 4%
Medicine and Dentistry 2 4%
Chemical Engineering 1 2%
Other 1 2%
Unknown 14 27%
Attention Score in Context

Attention Score in Context

This research output has an Altmetric Attention Score of 1. This is our high-level measure of the quality and quantity of online attention that it has received. This Attention Score, as well as the ranking and number of research outputs shown below, was calculated when the research output was last mentioned on 13 June 2018.
All research outputs
#20,663,600
of 25,382,440 outputs
Outputs from Genes & Genomics
#273
of 661 outputs
Outputs of similar age
#338,156
of 443,583 outputs
Outputs of similar age from Genes & Genomics
#9
of 18 outputs
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So far Altmetric has tracked 661 research outputs from this source. They receive a mean Attention Score of 1.3. This one is in the 46th percentile – i.e., 46% of its peers scored the same or lower than it.
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