cloning and expression of ipac gene from shigella dysenteriae

نویسندگان

f mallaei department of biological sciences, faculty of sciences, imam hossein university, iran

m saadati department of biological sciences, faculty of sciences, imam hossein university, iran -, [email protected]; department of biological sciences, faculty of sciences, imam hossein university, iran -, [email protected]

h honari department of biological sciences, faculty of sciences, imam hossein university, iran

sh nazarian department of biological sciences, faculty of sciences, imam hossein university, iran

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Probiotic Bifidobacterium Lactis Bacteria Inhibit the Invasion Phenotype of Shigella Dysenteriae Induced By Invasion Plasmid Antigen C

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Immunogenicity of a New Recombinant IpaC from Shigella dysenteriae Type I in Guinea Pig as a Vaccine Candidate

Background: Recombinant vaccine technology is one of the most developed means in controlling infectious diseases. However, an effective vaccine against Shigella is still missing. Objective: To evaluate recombinant IpaC protein of Shigella as a vaccine candidate. Methods: In this study we cloned IpaC gene into an expression vector in prokaryotic system. The protein expression was evaluated by SD...

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Background: Stresses (such as drought, salt, viruses, and others) seriously affect plant productivity. To cope with these threats, plants express a large number of genes, including several members of ERD (early responsive to dehydration) genes to synthesize and assemble adaptive molecules. But, the function of ERD3 gene hasn’t been known so far.Objectives:</strong...

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Immunogenicity of a new recombinant IpaC from Shigella dysenteriae type I in guinea pig as a vaccine candidate.

BACKGROUND Recombinant vaccine technology is one of the most developed means in controlling infectious diseases. However, an effective vaccine against Shigella is still missing. OBJECTIVE To evaluate recombinant IpaC protein of Shigella as a vaccine candidate. METHODS In this study we cloned IpaC gene into an expression vector in prokaryotic system. The protein expression was evaluated by S...

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Alcanivorax borkumensis is a marine bacterium that has ability to grow on limited substrates that mainly is alkanes. The ability to use wide range of hydrocarbons is advantage of this bacterium to other marine community bacteria. A. borkumensis have two genetic systems for alkane biodegradation. The First system is alkane hydroxylase (alk-B1and alk-B2) and the second system is...

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Cloning and gene expression of cytochrome P450 gene from Alcanivorax borkumensis Bacterium

Alcanivorax borkumensis is a marine bacterium that has ability to grow on limited substrates that mainly is alkanes. The ability to use wide range of hydrocarbons is advantage of this bacterium to other marine community bacteria. A. borkumensis have two genetic systems for alkane biodegradation. The First system is alkane hydroxylase (alk-B1and alk-B2) and the second system is...

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عنوان ژورنال:
trauma monthly

جلد ۲۰۱۶، شماره ۱۱، صفحات ۱-۶

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