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Featured researches published by Erik A. Petrovskis.


Virology | 1987

A small open reading frame in pseudorabies virus and implications for evolutionary relationships between herpesviruses

Erik A. Petrovskis; Leonard E. Post

An open reading frame coding for an 11-kDa protein was located downstream from the gI gene of pseudorabies virus (PRV). This open reading frame is homologous to an open reading frame (US9) in an analogous position in herpes simplex virus and to an open reading frame (US1) in a different position in varicella zoster virus. The open reading frame encoding the 11-kDa protein is in a region known to be deleted in live attenuated vaccine strains of PRV.


Gene | 1985

A method for efficient gene isolation from phage λgt11 libraries: use of antisera to denatured, acetone-precipitated proteins

James G. Timmins; Erik A. Petrovskis; Carmine C. Marchioli; Leonard E. Post

Experience with cloning pseudorabies virus (PRV) DNA in the lambda gt11 phage vector has shown that there are special requirements for the antisera used in screening the libraries, in addition to the requirement that the antisera recognize proteins on a Western blot. Initial screening of a lambda gt11 library of sheared PRV DNA fragments in Escherichia coli for expression of PRV antigens using PRV hyperimmune antisera was unsuccessful. It was only after screening the library with antisera raised against PRV proteins eluted from sodium dodecyl sulfate (SDS)-polyacrylamide (PA) gels that positive results were obtained. These gel-slice antisera (GSA) were equivalent in potency to hyperimmune antisera in standard immunoassays (including ELISA, immunoprecipitation, Western blots, and neutralization of virus), but only the GSA could recognize PRV fusion proteins expressed by recombinant lambda gt11 phage. This difference was seen despite the fact that hyperimmune antisera performed satisfactorily on Western blots of denatured PRV-infected cell extracts. These results show that the efficiency of screening expression libraries in E. coli can be improved if antibodies are raised against denatured proteins.


Archive | 1986

Pseudorabies virus protein

Erik A. Petrovskis; Leonard E. Post; James G. Timmins


Archive | 1993

Herpes virus thymidien kinase-encoding DNA

Jack H. Nunberg; Leonard E. Post; Teresa Compton; Erik A. Petrovskis


Archive | 1989

Methods for isolating herpes virus thymidine kinase-encoding dna

Leonard E. Post; Teresa Compton; Jack H. Nunberg; Erik A. Petrovskis


Archive | 1995

Pseudorabies virus protein cross reference to related applications

Erik A. Petrovskis; Leonard E. Post; James G. Timmins


Archive | 1994

偽狂犬病ウイルスワクチン用ポリペプチド、その製法、およびそれを含有するワクチン

Erik A. Petrovskis; Leonard E. Post; James G. Timmins; エリック・エイ・ペトロブスキス; ジェイムス・ジイ・チミンス; レオナルド・イー・ポスト


Archive | 1987

A recombinant DNA molecule, host cell transformed therewith, a process for producing a polypeptide using the recombinant DNA molecule, and a diagnostic kit comprising such a polypeptide

Erik A. Petrovskis; Leonard E. Post; James G. Timmins


Archive | 1986

Pseudorabiesvirus-Protein. Pseudorabies virus protein.

Erik A. Petrovskis; Leonard E. Post; James G. Timmins


Archive | 1986

Proteine du virus pseudorabique

Erik A. Petrovskis; Leonard E. Post; James G. Timmins

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