C12N2770/32122

Recombinant foot-and-mouth disease virus with reduced immunosuppression activity, and preparation method and use thereof

The present disclosure belongs to the technical field of biological products for veterinary medicine, and specifically relates to a recombinant foot-and-mouth disease virus (FMDV) with a reduced immunosuppressive activity, a preparation method and use thereof, and a recombinant vaccine strain. According to the present disclosure, it is firstly discovered that FMDV 3B protein has an immunosuppressive function, and key sites for exerting the immunosuppressive function are found. A recombinant FMDV vaccine strain with a lost immunosuppressive function in FMDV 3B protein is constructed by introducing amino acid mutations into three repeated copies of FMDV 3B protein.

Temperature-Sensitive Attenuated FMDV strains, Construction Method and Application Thereof

A temperature-sensitive attenuated FMDV strain, construction method and applications thereof. The construction method of the temperature-sensitive attenuated FMDV strain is as follows. Mutating a cytosine on K region loop of IRES domain 4 of an FMDV genome to a guanine or an adenine to obtain the temperature-sensitive attenuated FMDV strain, or replacing a K region of IRES domain 4 of an FMDV genome with a K region of IRES domain 4 of a bovine rhinovirus genome to obtain the temperature-sensitive attenuated FMDV strain.

FOOT AND MOUTH DISEASE VIRUS SEROTYPE O (FMDV-O) VACCINE
20190275138 · 2019-09-12 ·

The present invention relates to synthetic, consensus foot-and-mouth disease virus serotype O (FMDV-O) immunogenic proteins and nucleic acid molecule encoding such proteins and to methods for inducing immune responses against FMVD-O.

Bird flu vaccine combination comprising virus-like particles and novel adjuvants

A vaccine composition is disclosed. The vaccine composition comprises: (a) a therapeutically effective amount of an influenza virus-like particle (VLP) comprising: (i) influenza M1, influenza M2, influenza hemagglutinin (HA), and influenza neuraminidase (NA) proteins; (b) Foot-and-mouth disease virus (FMDV) capsid protein VP3, recombinant FMDV VP3 (rVP3), VP3 peptide, or SUMO VP3; and (c) alum. Also disclosed is use of a vaccine composition according to the invention in the manufacture of a medicament for inducing an immunogenic response in a subject in need thereof.

Modified foot-and-mouth disease virus 3C proteases, compositions and methods thereof

This application is directed generally to foot-and-mouth disease virus (FMDV) 3C proteases that have been modified by mutating a polynucleotide sequence coding for the FMDV 3C protease. The modified FMDV proteases exhibit proteolytic activity on FMDV P1 precursor protein and exhibit a reduction in one or more toxic or inhibitory properties associated with an unmodified FMDV 3C protease on a host cell used to recombinantly produce it. Vectors carrying polynucleotides encoding modified FMDV 3C protease sequences can induce production of FMDV virus-like particles in a host cell when expressed in the host cell. The modified FMDV 3C proteases can generally be used to produce immunogenic FMDV preparations capable of inducing an immune response against FMDV.

METHOD FOR PURIFYING AND CONCENTRATING INACTIVATED ANTIGEN of FOOT-AND-MOUTH DISEASE VIRUS

A method for inactivated foot-and-mouth disease virus antigen purification and concentration, which relates to the field of biotechnology which includes the following steps of: (1) adding an adaptor protein with an amino acid sequence as shown in SEQ ID NO: 2 into the inactivated foot-and-mouth disease virus antigen, mixing evenly, and incubating; (2) adding a purified carrier, mixing evenly, and incubating the mixture, the purified carrier being a lactococcus lactis skeleton; and (3) centrifuging and obtaining a precipitate.

VACCINES AND PHARMACEUTICAL COMPOSITIONS AGAINST FOOT-AND-MOUTH DISEASE VIRUS

This application is directed generally to foot-and-mouth disease virus (FMDV) 3C proteases that have been modified by mutating a polynucleotide sequence coding for the FMDV 3C protease. The modified FMDV proteases exhibit proteolytic activity on FMDV P1 precursor protein and exhibit a reduction in one or more toxic or inhibitory properties associated with an unmodified FMDV 3C protease on a host cell used to recombinantly produce it. Vectors carrying polynucleotides encoding modified FMDV 3C protease sequences can induce production of FMDV virus-like particles in a host cell when expressed in the host cell. The modified FMDV 3C proteases can generally be used to produce immunogenic FMDV preparations capable of inducing an immune response against FMDV.

METHOD FOR PRODUCING FOOT-AND-MOUTH DISEASE VIRUS (FMDV) VIRAL PROTEINS UTILIZING A MODIFIED FMDV 3C PROTEASE

This application is directed generally to foot-and-mouth disease virus (FMDV) 3C proteases that have been modified by mutating a polynucleotide sequence coding for the FMDV 3C protease. The modified FMDV proteases exhibit proteolytic activity on FMDV P 1 precursor protein and exhibit a reduction in one or more toxic or inhibitory properties associated with an unmodified FMDV 3C protease on a host cell used to recombinantly produce it. Vectors carrying polynucleotides encoding modified FMDV 3C protease sequences can induce production of FMDV virus-like particles in a host cell when expressed in the host cell. The modified FMDV 3C proteases can generally be used to produce immunogenic FMDV preparations capable of inducing an immune response against FMDV.

DNA VACCINES AGAINST FOOT-AND-MOUTH DISEASE VIRUS

This application is directed generally to foot-and-mouth disease virus (FMDV) 3C proteases that have been modified by mutating a polynucleotide sequence coding for the FMDV 3C protease. The modified FMDV proteases exhibit proteolytic activity on FMDV P1 precursor protein and exhibit a reduction in one or more toxic or inhibitory properties associated with an unmodified FMDV 3C protease on a host cell used to recombinantly produce it. Vectors carrying polynucleotides encoding modified FMDV 3C protease sequences can induce production of FMDV virus-like particles in a host cell when expressed in the host cell. The modified FMDV 3C proteases can generally be used to produce immunogenic FMDV preparations capable of inducing an immune response against FMDV.

PROCESSING ENGINEERED FMDV P1 POLYPEPTIDE USING AN ALTERNATIVE TEV PROTEASE

Polynucleotide constructs that express an engineered foot-and-mouth disease (FMDV) P1 precursor protein and a non-FMDV TEV protease and methods for safe and efficient recombinant production of FMDV antigens and immunogens. Recombinant production of FMDV antigens avoids the need to culture highly-infectious FMDV, while conventional culture methods for producing FMDV antigens rely on the native FMDV 3C protease which exerts toxic effects on host cells. The inventors have developed a new system that efficiently and safely processes FMDV P1 precursor without the FMDV 3C protease, thus avoiding the toxic effects associated with use of the 3C protease. The invention is also directed to the FMDV antigens and virus-like particles produced by this system as well as to FMDV vaccines, diagnostics and other biologics.