Japanese
Albanian
Arabic
Armenian
Azerbaijani
Belarusian
Bengali
Bosnian
Catalan
Czech
Danish
Deutsch
Dutch
English
Estonian
Finnish
Français
Greek
Haitian Creole
Hebrew
Hindi
Hungarian
Icelandic
Indonesian
Irish
Italian
Japanese
Korean
Latvian
Lithuanian
Macedonian
Mongolian
Norwegian
Persian
Polish
Portuguese
Romanian
Russian
Serbian
Slovak
Slovenian
Spanish
Swahili
Swedish
Turkish
Ukrainian
Vietnamese
Български
中文(简体)
中文(繁體)
Journal of Sichuan University (Medical Science Edition) 2016-Jan

[Expression, Purification and Structure Prediction of Hum s1, a Major Allergen of Humulus Scandens].

登録ユーザーのみが記事を翻訳できます
ログインサインアップ
リンクがクリップボードに保存されます
Yun Liu
Xiu-zhen Sun
Jing Xu
Yuan-yuan Wu

キーワード

概要

OBJECTIVE

Hum s1, a major allergen of Humulus Scandens, was cloned, expressed and purified. Its protein structure and function was predicted and analyzed, which provided a foundation for further studies into the diagnostic and therapeutic efficacy of the recombinant allergen.

METHODS

The target gene was amplified by PCR and sub-cloned into the expression vector pET32a through Kpn I /Xho I site. The recombinant plasmid was transformed into clone strain E. coli DH5α. The positive recombinant plasmid identified by PCR was transformed into expression strain E. coli BL-21. The expressed fusion protein was induced by IPTG, and purified using fast protein liquid chromatography. The structure and function of the protein was predicted and analyzed.

RESULTS

Prokaryotic expression plasmid pET32a-G2 was constructed successfully. Hum s1 was expressed and purified. The purity of expressed fusion protein exceeded 90%. It has three potential antigen epitopes and two EF-hand structural domains. A three-dimensional model was successfully constructed. The recombinant protein was proved to have immunological activity, with ELESA showing good attachment to sera samples of patients who were allergic to Humulus Scandens.

CONCLUSIONS

Prokaryotic expression vector of Hum s1 was successfully constructed. The recombinant protein was expressed and purified, with its epitope and three-dimensional model being predicted by bioinformatics. The study provided a basis for further development of recombinant vaccines.

Facebookページに参加する

科学に裏打ちされた最も完全な薬草データベース

  • 55の言語で動作します
  • 科学に裏打ちされたハーブ療法
  • 画像によるハーブの認識
  • インタラクティブGPSマップ-場所にハーブをタグ付け(近日公開)
  • 検索に関連する科学出版物を読む
  • それらの効果によって薬草を検索する
  • あなたの興味を整理し、ニュース研究、臨床試験、特許について最新情報を入手してください

症状や病気を入力し、役立つ可能性のあるハーブについて読み、ハーブを入力して、それが使用されている病気や症状を確認します。
*すべての情報は公開された科学的研究に基づいています

Google Play badgeApp Store badge