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闯过终止密码子:斑马鱼(Danio rerio)牛磺酸生物合成酶翻译过程中UAG提前终止信号的通读

Running the Stop Sign: Readthrough of a Premature UAG Termination Signal in the Translation of a Zebrafish (Danio rerio) Taurine Biosynthetic Enzyme.

作者信息

Larkin Mary E M, Place Allen R

机构信息

Institute of Marine and Environmental Technology, 701 E. Pratt Street, Baltimore, MD 21202, USA.

出版信息

Mar Drugs. 2017 Jun 3;15(6):162. doi: 10.3390/md15060162.

Abstract

The UAG termination codon is generally recognized as the least efficient and least frequently used of the three universal stop codons. This is substantiated by numerous studies in an array of organisms. We present here evidence of a translational readthrough of a mutant nonsense UAG codon in the transcript from the cysteine sulfinic acid decarboxylase () gene (ENSDARG00000026348) in zebrafish. The gene encodes the terminal enzyme in the taurine biosynthetic pathway. Taurine is a critical amino acid for all animals, playing several essential roles throughout the body, including modulation of the immune system. The sa9430 zebrafish strain (ZDB-ALT-130411-5055) has a point mutation leading to a premature stop codon (UAG) 20 amino acids 5' of the normal stop codon, UGA. Data from immunoblotting, enzyme activity assays, and mass spectrometry provide evidence that the mutant is making a CSAD protein identical to that of the wild-type (XP_009295318.1) in terms of size, activity, and amino acid sequence. UAG readthrough has been described in several species, but this is the first presentation of a case in fish. Also presented are the first data substantiating the ability of a fish CSAD to utilize cysteic acid, an alternative to the standard substrate cysteine sulfinic acid, to produce taurine.

摘要

UAG终止密码子通常被认为是三种通用终止密码子中效率最低、使用频率最低的。这在一系列生物体的众多研究中得到了证实。我们在此展示了斑马鱼中半胱氨酸亚磺酸脱羧酶()基因(ENSDARG00000026348)转录本中一个突变的无义UAG密码子发生翻译通读的证据。该基因编码牛磺酸生物合成途径中的末端酶。牛磺酸是所有动物的一种关键氨基酸,在全身发挥多种重要作用,包括调节免疫系统。sa9430斑马鱼品系(ZDB-ALT-130411-5055)存在一个点突变,导致在正常终止密码子UGA的5'端20个氨基酸处出现一个提前的终止密码子(UAG)。免疫印迹、酶活性测定和质谱数据提供了证据,表明该突变体产生的CSAD蛋白在大小、活性和氨基酸序列方面与野生型(XP_009295318.1)相同。在几个物种中都描述过UAG通读现象,但这是首次在鱼类中出现这种情况。同时还展示了首个证实鱼类CSAD能够利用半胱氨酸(标准底物半胱氨酸亚磺酸的替代物)来产生牛磺酸能力的数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7fe/5484112/6ae3a72964bd/marinedrugs-15-00162-g001.jpg

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