Method for improving catalytic performance of trypsin through multi-strategy combined mutation

The invention discloses a method for improving the catalytic performance of trypsin through multi-strategy combined mutation. According to a mutant, trypsin with the amino acid sequence shown in SEQ ID NO.3 serves as a parent, the 30 < th > amino acid is mutated into proline, the 224 < th &...

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Main Authors XIA SHENG, LIU JUHONG, LIANG DAMING, TIAN MEIHUA, QI YIQING, WANG YUWAN, HU YAN, WANG WEI, YOU XIHUO, ZENG XUHAO, REN YANAN, JIANG BENRONG, XUE DONGSHENG, SHEN LI
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LanguageChinese
English
Published 02.04.2024
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Abstract The invention discloses a method for improving the catalytic performance of trypsin through multi-strategy combined mutation. According to a mutant, trypsin with the amino acid sequence shown in SEQ ID NO.3 serves as a parent, the 30 < th > amino acid is mutated into proline, the 224 < th > amino acid is mutated into asparagine, and the trypsin with the amino acid sequence shown in SEQ ID NO.3 serves as the parent. And serine, lysine, leucine, leucine, proline and proline are inserted between the 13th amino acid and the 14th amino acid to obtain the amino acid sequence. According to the invention, a trypsin molecular structure is modified by a method of inserting a gene segment and combining point mutation, and a mutant strain with improved thermal stability is obtained after mutation verification. The thermal stability of the mutant is obviously improved, and the catalytic activity of the enzyme is not influenced or even improved. The mutant can be industrially produced at a relatively high temperature, meet
AbstractList The invention discloses a method for improving the catalytic performance of trypsin through multi-strategy combined mutation. According to a mutant, trypsin with the amino acid sequence shown in SEQ ID NO.3 serves as a parent, the 30 < th > amino acid is mutated into proline, the 224 < th > amino acid is mutated into asparagine, and the trypsin with the amino acid sequence shown in SEQ ID NO.3 serves as the parent. And serine, lysine, leucine, leucine, proline and proline are inserted between the 13th amino acid and the 14th amino acid to obtain the amino acid sequence. According to the invention, a trypsin molecular structure is modified by a method of inserting a gene segment and combining point mutation, and a mutant strain with improved thermal stability is obtained after mutation verification. The thermal stability of the mutant is obviously improved, and the catalytic activity of the enzyme is not influenced or even improved. The mutant can be industrially produced at a relatively high temperature, meet
Author LIU JUHONG
LIANG DAMING
XIA SHENG
QI YIQING
XUE DONGSHENG
ZENG XUHAO
HU YAN
REN YANAN
SHEN LI
WANG WEI
TIAN MEIHUA
JIANG BENRONG
YOU XIHUO
WANG YUWAN
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– fullname: LIANG DAMING
– fullname: TIAN MEIHUA
– fullname: QI YIQING
– fullname: WANG YUWAN
– fullname: HU YAN
– fullname: WANG WEI
– fullname: YOU XIHUO
– fullname: ZENG XUHAO
– fullname: REN YANAN
– fullname: JIANG BENRONG
– fullname: XUE DONGSHENG
– fullname: SHEN LI
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DocumentTitleAlternate 一种多策略联合突变提高胰蛋白酶催化性能的方法
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Snippet The invention discloses a method for improving the catalytic performance of trypsin through multi-strategy combined mutation. According to a mutant, trypsin...
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SubjectTerms BEER
BIOCHEMISTRY
CHEMISTRY
COMPOSITIONS THEREOF
CULTURE MEDIA
ENZYMOLOGY
METALLURGY
MICROBIOLOGY
MICROORGANISMS OR ENZYMES
MUTATION OR GENETIC ENGINEERING
PROCESSES USING MICROORGANISMS
PROPAGATING, PRESERVING OR MAINTAINING MICROORGANISMS
SPIRITS
VINEGAR
WINE
Title Method for improving catalytic performance of trypsin through multi-strategy combined mutation
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