首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Chemically synthesized peptides predicted from the nucleotide sequence of the hepatitis B virus genome elicit antibodies reactive with the native envelope protein of Dane particles.
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Chemically synthesized peptides predicted from the nucleotide sequence of the hepatitis B virus genome elicit antibodies reactive with the native envelope protein of Dane particles.

机译:从乙型肝炎病毒基因组的核苷酸序列预测的化学合成肽可引发与Dane颗粒的天然包膜蛋白反应的抗体。

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摘要

Thirteen peptides corresponding to amino acid sequences predicted from the nucleotide sequence of the hepatitis B surface antigen were synthesized chemically. The free or carrier-linked synthetic peptides were injected into rabbits, and 7 of the 13 elicited an antipeptide response. Antisera against four of the six soluble peptides longer than 10 amino acids were reactive with native antigen and specifically precipitated the 23,000- and 28,000-dalton forms from Dane particles. As the hepatitis molecule had not been chosen for study because of any structural feature suggesting unique opportunities for success, these results suggest that the strategy is general and should work for any protein as long as enough domains are studied. Peptides such as these could prove to be ideal vaccines.
机译:化学合成了对应于从乙型肝炎表面抗原的核苷酸序列预测的氨基酸序列的十三种肽。将游离的或与载体连接的合成肽注射到兔中,并且13种中的7种引起抗肽反应。针对六个可溶性肽(长度超过10个氨基酸)中的四个的抗血清可与天然抗原反应,并从Dane颗粒中特异性沉淀23,000-和28,000-道尔顿形式。由于未发现肝炎分子是因为结构特征提示成功的独特机会而被选择进行研究,因此这些结果表明该策略是通用的,只要研究了足够的结构域,该策略就适用于任何蛋白质。这样的肽可能被证明是理想的疫苗。

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