在Archaea中由UAG编码的Pyrrolysine:充电一个UAG解码专业的tRNA
Gayathri Srinivasan1, Carey M James, Joseph A Krzycki
1Department of Microbiology, Ohio State University, Columbus, OH 43210, USA.
概括
甲素是第22个氨基酸,由Methanosarcina barkeri.中的UAG码子编码. 它的翻译涉及一种独特的转移RNA (tRNA) 和氨基酸-tRNA合成酶,使得氨酸的结合成为可能.
科学领域:
- 生物化学 生物化学
- 分子生物学分子生物学
- 遗传学 是一个遗传学.
背景情况:
- 甲氨酸是一种氨酸衍生物.
- 它是由甲基胺甲基转移酶基因中的UAG编码器编码的.
- pylT基因编码了一个带有CUA抗的转移RNA (tRNA),而pylS基因编码了一个独特的氨基酸-tRNA合成酶.
研究的目的:
- 为了研究罗利的合并机制.
- 为了识别罗利翻译中涉及的遗传组件.
- 为了确认罗利是第22个遗传编码的氨基酸.
主要方法:
- 基因鉴定和表征 (pylT和pylS).
- 对氨基酸-tRNA合成酶活性的分析.
- 对tRNA充电lysine的研究.
主要成果:
- 皮洛利是由UAG编码子编码的.
- 一种新的tRNA (pylT) 和氨基-tRNA合成酶 (pylS) 参与了氨酸翻译.
- 这些基因的同类存在于一种格拉姆阳性细菌中.
- 用氨酸充电tRNA (CUA) 是一个关键步骤.
结论:
- 皮洛利是第22个遗传编码的天然氨基酸.
- pylS-pylT系统有助于UAG编码子在甲基生物中转化为pyrrolysine.
- 这一发现扩展了已知的遗传密码.
相关概念视频
Transfer RNA Synthesis
One of the unique features of tRNA is the presence of modified bases. In some tRNAs, modified bases account for nearly 20% of the total bases in the molecule. Altogether, these unusual bases protect the tRNA from enzymatic degradation by RNases.
Each of these chemical modifications is carried by a specific enzyme, post-transcription. All of these enzymes have unique base and site-specificity. Methylation, the most common chemical modification, is carried by at least nine different enzymes, with...
Each of these chemical modifications is carried by a specific enzyme, post-transcription. All of these enzymes have unique base and site-specificity. Methylation, the most common chemical modification, is carried by at least nine different enzymes, with...
tRNA Activation
Aminoacyl-tRNA synthetases are present in both eukaryotes and bacteria. Though eukaryotes have 20 different aminoacyl-tRNA synthetases to couple to 20 amino acids, many bacteria do not have genes for all of these aminoacyl-tRNA synthetases. Despite this, they still use all 20 amino acids to synthesize their proteins. For instance, some bacteria do not have the gene encoding the enzyme that couples glutamine with its partner tRNA. In these organisms, one enzyme adds glutamic acid to all of the...
Transfer RNA Synthesis
One of the unique features of tRNA is the presence of modified bases. In some tRNAs, modified bases account for nearly 20% of the total bases in the molecule. Altogether, these unusual bases protect the tRNA from enzymatic degradation by RNases.
Each of these chemical modifications is carried by a specific enzyme, post-transcription. All of these enzymes have unique base and site-specificity. Methylation, the most common chemical modification, is carried by at least nine different enzymes, with...
Each of these chemical modifications is carried by a specific enzyme, post-transcription. All of these enzymes have unique base and site-specificity. Methylation, the most common chemical modification, is carried by at least nine different enzymes, with...
tRNA Activation
Aminoacyl-tRNA synthetases are present in both eukaryotes and bacteria. Though eukaryotes have 20 different aminoacyl-tRNA synthetases to couple to 20 amino acids, many bacteria do not have genes for all of these aminoacyl-tRNA synthetases. Despite this, they still use all 20 amino acids to synthesize their proteins. For instance, some bacteria do not have the gene encoding the enzyme that couples glutamine with its partner tRNA. In these organisms, one enzyme adds glutamic acid to all of the...
Biosynthesis of Nucleic Acids
Nucleic acid biosynthesis is a fundamental biochemical process that produces the purine and pyrimidine nucleotides essential for DNA and RNA synthesis. This pathway maintains a balanced nucleotide pool, preventing imbalances that could jeopardize genetic integrity and cellular function. Given the crucial role of nucleotides, their synthesis is tightly regulated to ensure proper cellular homeostasis.Purine BiosynthesisThe biosynthesis of purine nucleotides begins with ribose-5-phosphate, a...
Translation in Prokaryotes
Prokaryote translation is a complex, highly coordinated process that converts genetic information from mRNA into functional proteins. It involves three stages: initiation, elongation, and termination, each facilitated by specific molecular components.Initiation of TranslationThe process begins with the assembly of the ribosomal subunits and initiation factors on the mRNA. In bacteria, the 30S ribosomal subunit recognizes the Shine-Dalgarno sequence in the mRNA, a conserved region upstream of...


