在硫和氮限制条件下,对酿酒酵母生长至关重要的基因进行敲除筛选,揭示了通过囊泡运输系统进行细胞内分选。

IF 2.1 3区 生物学 Q3 GENETICS & HEREDITY
Sean Simmons, Joseph Graham, David Cobb, Shreya Sudakar, Emma G Teng, Emily Lee, Elaine T Do, Logan Scott, Allison Price, Perry Kezh, Amy M Wiles
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引用次数: 0

摘要

据了解,营养物质的有效性显著影响细胞的生长和代谢。然而,在营养有限的条件下生存的遗传基础并没有得到彻底的探索。因此,在这些条件下对生长至关重要的基因的识别和描述将增强对这些条件下细胞生存和生长至关重要的信号和生化途径和过程的理解。完成了一个包含4934个基因的基因缺失文库的生长筛选,以发现在限硫和限氮条件下正常生长所需的基因。在这些限制性环境下,通过与它们在合成的、确定的对照培养基中的生长进行比较,确定了所需的基因。经过归一化和统计分析,在限硫培养基中发现了732个必需基因,在限氮培养基中发现了761个基因,在两者中发现了重叠的313个基因,明显多于偶然预期。通过分析KEGG和基因本体来研究这些过程。已确定的蛋白质参与中枢代谢和氨基酸、甘油脂、甘油磷脂和维生素的代谢,以及MAPK和磷脂酰肌醇信号通路和囊泡运输、自噬、有丝自噬和内吞过程。其中,磷脂酰肌醇的代谢和信号传导并不经常在酵母营养饥饿的筛查中被发现,也不像我们在这里发现的那样,是囊泡融合、内吞作用或早期内核体的运输。本研究将进一步探讨这些过程在适应营养胁迫中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Saccharomyces cerevisiae knockout screen for genes critical for growth under sulfur- and nitrogen-limited conditions reveals intracellular sorting via vesicular transport systems.

It is understood that nutrient availability significantly impacts cellular growth and metabolism. The genetic basis for survival in nutrient-limited conditions, however, is not as thoroughly explored. The identification and description of the genes vital for growth in these conditions would therefore enhance the understanding of the signaling and biochemical pathways and processes crucial for cellular survival and growth under these constraints. A growth screen of a gene deletion library representing 4,934 genes of Saccharomyces cerevisiae was completed to discover genes required for normal growth under sulfur- and nitrogen-limited conditions. Genes were identified as required under these restrictive environments based on a comparison with their growth in a synthetic, defined control medium. After normalization and statistical analysis, 732 genes were noted as essential in sulfur-limited medium, and 761 genes were found for nitrogen-limited medium, with an overlap of 313 genes found to be needed in both, significantly more than expected by chance. Kyoto Encyclopedia of Genes and Genomes and Gene Ontologies were analyzed to investigate those processes involved. Proteins identified act in central metabolism and in metabolism of amino acids, glycerolipids, glycerophospholipids, and vitamins and in the pathways of mitogen-activated protein kinase and phosphatidylinositol signaling and the processes of vesicle trafficking, autophagy, mitophagy, and endocytosis. Of these, the metabolism and signaling of phosphatidylinositols are not frequently identified in screens examining nutrient starvation in yeast, nor are vesicular fusion, endocytosis, or trafficking to the early endosome, as we have discovered here. This study invites further exploration into the roles of these processes in adaptation to nutrient stress.

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来源期刊
G3: Genes|Genomes|Genetics
G3: Genes|Genomes|Genetics GENETICS & HEREDITY-
CiteScore
5.10
自引率
3.80%
发文量
305
审稿时长
3-8 weeks
期刊介绍: G3: Genes, Genomes, Genetics provides a forum for the publication of high‐quality foundational research, particularly research that generates useful genetic and genomic information such as genome maps, single gene studies, genome‐wide association and QTL studies, as well as genome reports, mutant screens, and advances in methods and technology. The Editorial Board of G3 believes that rapid dissemination of these data is the necessary foundation for analysis that leads to mechanistic insights. G3, published by the Genetics Society of America, meets the critical and growing need of the genetics community for rapid review and publication of important results in all areas of genetics. G3 offers the opportunity to publish the puzzling finding or to present unpublished results that may not have been submitted for review and publication due to a perceived lack of a potential high-impact finding. G3 has earned the DOAJ Seal, which is a mark of certification for open access journals, awarded by DOAJ to journals that achieve a high level of openness, adhere to Best Practice and high publishing standards.
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