首页> 外文期刊>The biochemical journal >Evidence for the absence of the terminal adenine nucleotide at the amino acid-acceptor end of transfer ribonucleic acid in non-lactating bovine mammary gland and its inhibitory effect on the aminoacylation of rat liver transfer ribonucleic acid
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Evidence for the absence of the terminal adenine nucleotide at the amino acid-acceptor end of transfer ribonucleic acid in non-lactating bovine mammary gland and its inhibitory effect on the aminoacylation of rat liver transfer ribonucleic acid

机译:非发酵牛乳腺转移核糖核酸氨基酸受体末端不存在末端腺嘌呤核苷酸的证据及其对大鼠肝转移核糖核酸氨基酰化的抑制作用

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p1. tRNA isolated from non-lactating bovine mammary gland competitively inhibits the formation of aminoacyl-tRNA in the rat liver system. 2. Non-lactating bovine mammary gland tRNA and twice-pyrophosphorolysed rat liver tRNA are unable to accept amino acids in a reaction catalysed by aminoacyl-tRNA synthetases from either rat liver or bovine mammary gland. Deacylated rat liver tRNA can however be aminoacylated in the presence of either enzyme. 3. Bovine mammary gland tRNA lacks the terminal adenine nucleotide at the 3′-terminus amino acid acceptor end, which can be replaced by incubation in the presence of rat liver nucleotide-incorporating enzyme, ATP and CTP. 4. The enzymically modified bovine tRNA (tRNApCpCpA) can bind labelled amino acids to form aminoacyl-tRNA, which can then transfer its labelled amino acids to growing polypeptide chains on ribosomes. 5. Molecules of rat liver tRNA or bovine mammary gland tRNA that lack the terminal adenine nucleotide or the terminal cytosine and adenine nucleotides inhibit the aminoacylation of normal rat liver tRNA to varying degrees. tRNA molecules lacking the terminal -pCpCpA nucleotide sequence exhibit the major inhibitory effect. 6. The enzyme fraction from bovine mammary gland corresponding to that containing the nucleotide-incorporating enzyme in rat liver is unable to catalyse the incorporation of cytosine and adenine nucleotides in pyrophosphorolysed rat liver tRNA and deacylated bovine tRNA. This fraction also markedly inhibits the action of the rat liver nucleotide-incorporating enzyme./p
机译:> 1。从非泌乳性牛乳腺中分离出的tRNA竞争性抑制了大鼠肝脏系统中氨酰基tRNA的形成。 2.非乳酸牛乳腺tRNA和两次焦磷酸化的大鼠肝tRNA在由大鼠肝或牛乳腺的氨酰-tRNA合成催化的反应中不能接受氨基酸。然而,在任何一种酶的存在下,去酰化的大鼠肝脏tRNA都可以被氨酰化。 3.牛乳腺tRNA在3'-末端氨基酸受体末端缺少末端腺嘌呤核苷酸,可以在存在大鼠肝核苷酸结合酶ATP和CTP的情况下进行孵育来代替。 4.酶修饰的牛tRNA(tRNApCpCpA)可以结合标记的氨基酸形成氨酰基-tRNA,然后可以将其标记的氨基酸转移到核糖体上生长的多肽链上。 5.缺乏末端腺嘌呤核苷酸或末端胞嘧啶和腺嘌呤核苷酸的大鼠肝脏tRNA或牛乳腺tRNA分子在不同程度上抑制正常大鼠肝脏tRNA的氨酰化。缺少末端-pCpCpA核苷酸序列的tRNA分子表现出主要的抑制作用。 6.来自牛乳腺的酶部分对应于在大鼠肝脏中含有核苷酸掺入酶的酶部分,不能催化胞嘧啶和腺嘌呤核苷酸在焦磷酸解大鼠肝tRNA和脱酰牛tRNA中的掺入。该部分还显着抑制大鼠肝核苷酸结合酶的作用。

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