This application claims priority from Chinese patent application number 202010859729.X filed on Aug. 24, 2020; the disclosure of which are incorporated herein by reference in their entirety.
The present invention relates to a mutant strain of Corynebacterium glutamicum with efficient expression of exogenous proteins and its application, which belongs to the field of bioengineering technology.
Corynebacterium glutamicum is a gram-positive bacteria belonging to the Actinomycetales and the Corynebacterium. It is an important protein expression host. It has many advantages, such as endotoxin-free, high-density production and complete protein secretion system. At present, it has been used as a synthetic biological host cell to produce high value-added compounds and recombinant pharmaceutical proteins, such as glutamic acid and lysine. It is also used in food industry and animal feed production.
When Corynebacterium glutamicum serves as an exogenous protein expression host, the amount of protein expression is low. Therefore, it is necessary to perform mutagenesis screening for Corynebacterium glutamicum to make it more efficient in expression of the exogenous protein.
The present invention provides a mutant strain of Corynebacterium glutamicum with efficient expression of exogenous proteins, which can solve the technical problem of low protein expression quantity when Corynebacterium glutamicum is used as an exogenous protein expression host.
The technical scheme is a mutant strain of Corynebacterium glutamicum with efficient expression of exogenous proteins, which is deposited in the China General Microbiological Culture Collection Center (CGMCC), and the deposit number is CGMCC No. 20138.
Further, the mutant strain of Corynebacterium glutamicum is obtained by atmospheric and room temperature plasma (ARTP) mutagenesis and screening using Corynebacterium glutamicum with the deposited number of CGMCC1.15647 as an initial strain.
The present invention also provides a method of use of the above-mentioned mutant strain of Corynebacterium glutamicum for the expression of exogenous proteins.
Further, the exogenous protein is a single domain of heavy chain antibody or N-terminal pro-peptide of human procollagen type I.
Variable domain of heavy chin of heavy-chin antibody (VHH) is a single domain antibody composed of a heavy chain variable region. The heavy chain variable region is derived from a heavy chain antibody that naturally lacks the light chain in camel serum.
The mutant strain of Corynebacterium glutamicum in the present invention, verified by the expression of exogenous proteins, showed significantly enhanced expression of both intracellular and secreted proteins when compared with the initial strain.
Biological Deposit Instructions
The E. coli DH5a used in the following examples or application examples was purchased from TAKARA.
The Corynebacterium glutamicum CGMCC 1.15647 used in the following examples or application examples was publicly deposited in 2016, and a person skilled in the art is able to acquire the existing bacterial strain prior to the application date.
The vector backbone pXMJ19 used in the following examples or application examples was purchased from Biovector; catalog number is BiovectorpXMJ19.
The restriction endonucleases EcoR V, XhoI, HindIII and BamHI used in the following examples or application examples were purchased from TaKaRa Company, and the catalog numbers are 1612, 1635, 1615, and 1605, respectively.
The plasmid extraction kits, gel recovery and column recovery kits used in the following examples or application examples were purchased from Axygen, and the catalog numbers are AP-MD-P-10, AP-GX-250, AP-PCR-250, respectively.
The ligase, solutionI, used in the following examples or application examples was purchased from TaKaRa Company, catalog number is D6020A.
In the following examples or application examples, LB medium is used for the cultivation of E. coli. The medium formula is: tryptone 10 g, yeast extract 5 g, NaCl 10 g, and deionized water 1 L.
In the following examples or application examples, LBB medium is used for the cultivation of Corynebacterium glutamicum. The medium formula is: tryptone 10 g, yeast extract 5 g, NaCl 10 g, brain-heart infusion 10 g, and deionized water 1 L.
In the following examples or application examples, LBHIS medium is used for the cultivation of Corynebacterium glutamicum. The medium formula is: tryptone 5 g, yeast extract 2.5 g, NaCl 5 g, brain-heart infusion 18.5 g, sorbitol 91 g, deionized water 1 L.
1. Mutant Strains Basic Information
2. Preparation of Mutant Strains
2.1 Preparation of pXMJ19-EGFP Plasmid
2.2 Determine the Best Mutation Time
2.3 Screening of Mutant Strains by Flow Cytometry
2.4 Screening the Best Mutant Strain
2.5 Stability Test of Mutant Strain
2.6 Exogenous Protein Expression Experiment of Mutant Strains
2.6.1 Intracellular Protein VHH Expression Experiment
AAGCTTATGCAGGTCCAACTGCAAGAAAG;
GAATTCTCAGTGGTGGTGGTGGTGGTGTGA
The pXMJ19-VHH plasmid was transformed into the mutant strain BZH-MLH-YB5 and the initial strain CGMCC1.15647, and the obtained transformants were individually cultured for 48 hours. The cells were disrupted by sonication, and the supernatant was centrifuged and analyzed by Western blot, and the obtained band pattern is shown in
In
2.6.2 Secreted Protein PINP Expression Experiment
AAGCTTATGCAAGAAGAAGGCCAAGTGGA;
GAATTCTTACTGGCCGCCGTGGTGATGGTG
The pXMJ19-VHH plasmid was transformed into the mutant strain BZH-MLH-YB5 and the initial strain CGMCC1.15647, and the obtained transformants were individually cultured for 48 hours. The supernatant was centrifuged and analyzed by Western blot, and the obtained band pattern is shown in
In
This application contains a sequence listing which has been submitted in ASCII text file via EFS-Web and is hereby incorporated by reference in its entirety. The ASCII-formatted sequence listing, is named P2059US00_sequence listing.txt, and is 4,402 bytes in size.
SEQ ID NO: 1 in the sequence listing file is the corresponding gene sequence of EGFP, SEQ ID NO: 2 in the sequence listing file is the corresponding gene sequence of VHH, and SEQ ID NO: 3 in the sequence listing file is the corresponding gene sequence of PINP.
SEQ ID NO: 4 in the sequence listing file is the corresponding forward primer F, SEQ ID NO: 5 in the sequence listing file is the corresponding reverse primer R.
SEQ ID NO: 6 in the sequence listing file is the corresponding primer EGFP-F, SEQ ID NO: 7 in the sequence listing file is the corresponding primer EGFP-R.
SEQ ID NO: 8 in the sequence listing file is the corresponding primer VHH-F, SEQ ID NO: 9 in the sequence listing file is the corresponding primer VHH-R.
SEQ ID NO: 10 in the sequence listing file is the corresponding primer PINP-F, SEQ ID NO: 11 in the sequence listing file is the corresponding primer PINP-R.
Number | Date | Country | Kind |
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202010859729.X | Aug 2020 | CN | national |