蛋白质编码转录的5'-终端糖基化:一种延长mRNA寿命的表转录组修饰
Tithi Banerjee1, Daniel J Luciano1, Joel G Belasco1
1Department of Microbiology, New York University School of Medicine, New York, NY 10016.
概括
研究人员在大肠杆菌中发现了一种新型的RNA修饰:信使RNA (mRNA) 上的5'-终端葡萄糖盖. 这种封闭保护mRNA免受降解,可能调节细菌蛋白质合成.
科学领域:
- 分子生物学分子生物学
- 生物化学 生化学
- 遗传学 是一个遗传学.
背景情况:
- 糖基化是一种常见的翻译后修饰,影响蛋白质,脂质和多糖.
- 包括封闭在内的RNA修改对于RNA的稳定性和功能至关重要.
- 现有的RNA盖通常通过酶去除,调节RNA寿命.
研究的目的:
- 为了研究超出已知的宏分子的新形式的糖化.
- 在细菌中识别和描述新的RNA封闭机制.
- 了解这些新型RNA封顶的功能含义.
主要方法:
- 对大肠杆菌埃舍里希亚RNA修饰的分析.
- 在U开始的mRNA中识别5'-终端修饰.
- 对封闭与未封闭mRNA的稳定性进行评估.
- 调查了已识别的帽子的酶去除过程.
主要成果:
- 在大肠杆菌中U启动的mRNA上发现了5'-终端葡萄糖盖,在30-40%的转录中存在.
- 没有观察到N-乙葡萄糖胺盖.
- 证明葡萄糖抗酶去除,延长mRNA细胞寿命.
- 表明葡萄糖阻碍了5'-端依赖的mRNA降解.
结论:
- 蛋白质编码转录可以在5'末端用葡萄糖糖化.
- 这种非正规的封闭在大肠杆菌中很普遍,并增强了mRNA的稳定性.
- 葡萄糖上限代表了显著的表体转录基因修饰,在细菌基因表达中具有潜在的调节作用.
相关概念视频
Pre-mRNA Processing: Modification of pre-mRNA Ends
13.7K
In eukaryotic cells, transcripts made by RNA polymerase are modified and processed before exiting the nucleus. Unprocessed RNA is called precursor mRNA or pre-mRNA to distinguish it from mature mRNA.
Once about 20-40 ribonucleotides have been joined together by RNA polymerase, a group of enzymes adds a cap to the 5' end of the growing transcript. In this process, a 5' phosphate is replaced by modified guanosine that has a methyl group attached (7-methyl guanosine). This 5' cap helps...
Once about 20-40 ribonucleotides have been joined together by RNA polymerase, a group of enzymes adds a cap to the 5' end of the growing transcript. In this process, a 5' phosphate is replaced by modified guanosine that has a methyl group attached (7-methyl guanosine). This 5' cap helps...
13.7K
pre-mRNA Processing
57.1K
In eukaryotic cells, transcripts made by RNA polymerase are modified and processed before exiting the nucleus. Unprocessed RNA is called precursor mRNA or pre-mRNA to distinguish it from mature mRNA.
Once about 20-40 ribonucleotides have been joined together by RNA polymerase, a group of enzymes adds a “cap” to the 5’ end of the growing transcript. In this process, a 5’ phosphate is replaced by modified guanosine that has a methyl group attached to it (7-Methyl...
Once about 20-40 ribonucleotides have been joined together by RNA polymerase, a group of enzymes adds a “cap” to the 5’ end of the growing transcript. In this process, a 5’ phosphate is replaced by modified guanosine that has a methyl group attached to it (7-Methyl...
57.1K
Protein Glycosylation
9.3K
Glycosylation, the most common post-translational modification for proteins, serves diverse functions. Adding sugars to proteins makes the proteins more resistant to proteolytic digestion. Glycosylated proteins can act as markers and receptors to promote cell-cell adhesion. Additionally, they have many essential quality control functions in the cell, such as correct protein folding and facilitating transport of misfolded proteins to the cytosol, which can be degraded.
Glycosylation occurs in...
Glycosylation occurs in...
9.3K
RNA Stability
35.6K
Intact DNA strands can be found in fossils, while scientists sometimes struggle to keep RNA intact under laboratory conditions. The structural variations between RNA and DNA underlie the differences in their stability and longevity. Because DNA is double-stranded, it is inherently more stable. The single-stranded structure of RNA is less stable but also more flexible and can form weak internal bonds. Additionally, most RNAs in the cell are relatively short, while DNA can be up to 250 million...
35.6K
Oligosaccharide Assembly
3.5K
Protein glycosylation starts in the ER lumen and continues in the Golgi apparatus. Glycosyltransferases catalyze the addition of sugar molecules or glycosylation of proteins. Usually, these enzymes add sugars to the hydroxyl groups of selected serine or threonine residues to form O-linked glycans or the amino groups of asparagine residues to form N-linked glycans. Different positions on the same polypeptide chain can contain differently linked glycans.
Multiple sugar molecules that may or may...
Multiple sugar molecules that may or may...
3.5K
mRNA Stability and Gene Expression
6.5K
The structure and stability of mRNA molecules regulates gene expression, as mRNAs are a key step in the pathway from gene to protein. In eukaryotes, the half-life of mRNA varies from a few minutes up to several days. mRNA stability is essential in growth and development. The absence of the proteins regulating its stability, such as tristetraprolin in mice, can cause systemic issues, including bone marrow overgrowth, inflammation, and autoimmunity.
Cis-acting Elements involved in mRNA stability
Cis-acting Elements involved in mRNA stability
6.5K


