Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Analysis of cloned DNA from Leptospira biflexa serovar patoc which complements a deletion of the Escherichia coli trpE gene

View through CrossRef
To analyze the cloned region of the chromosome of the spirochete Leptospira biflexa serovar patoc which complemented a defect in the trpE gene of Escherichia coli, we performed a series of experiments involving subcloning, transposon mutagenesis, and maxicells. By subcloning into pBR322 we were able to isolate the Leptospira genes on a 9.7-kilobase pair plasmid (pYC6). Transposon mutagenesis with Tn5 identified a 2.8-kilobase pair region of this plasmid as being necessary to complement a trpE deletion mutation in E. coli. Transformation of plasmid pYC6 into E. coli cells deleted for trpE and the proximal end of trpD showed that the Leptospira DNA complemented both defects. A maxicell analysis of various transposon-induced mutations of the plasmid revealed that three proteins (53.5, 23.6, and 22 kilodaltons) were encoded by the 2.8-kilobase pair region of the Leptospira genome. Two different promoters controlled the production of these three proteins.
American Society for Microbiology
Title: Analysis of cloned DNA from Leptospira biflexa serovar patoc which complements a deletion of the Escherichia coli trpE gene
Description:
To analyze the cloned region of the chromosome of the spirochete Leptospira biflexa serovar patoc which complemented a defect in the trpE gene of Escherichia coli, we performed a series of experiments involving subcloning, transposon mutagenesis, and maxicells.
By subcloning into pBR322 we were able to isolate the Leptospira genes on a 9.
7-kilobase pair plasmid (pYC6).
Transposon mutagenesis with Tn5 identified a 2.
8-kilobase pair region of this plasmid as being necessary to complement a trpE deletion mutation in E.
coli.
Transformation of plasmid pYC6 into E.
coli cells deleted for trpE and the proximal end of trpD showed that the Leptospira DNA complemented both defects.
A maxicell analysis of various transposon-induced mutations of the plasmid revealed that three proteins (53.
5, 23.
6, and 22 kilodaltons) were encoded by the 2.
8-kilobase pair region of the Leptospira genome.
Two different promoters controlled the production of these three proteins.

Related Results

Identification and nucleotide sequence of the Leptospira biflexa serovar patoc trpE and trpG genes
Identification and nucleotide sequence of the Leptospira biflexa serovar patoc trpE and trpG genes
Leptospira biflexa is a representative of an evolutionarily distinct group of eubacteria. In order to better understand the genetic organization and gene regulatory mechanisms of t...
Transcription Start Site Mapping and Small RNA Profiling of Leptospira biflexa serovar Patoc
Transcription Start Site Mapping and Small RNA Profiling of Leptospira biflexa serovar Patoc
Abstract Leptospirosis is an emerging zoonotic disease caused by bacterial species of the genus Leptospira. However, the regulatory mechanisms and pathways underlying the a...
Nucleotide sequence analysis of a gene cloned from Leptospira biflexa serovar patoc which complements an argE defect in Escherichia coli
Nucleotide sequence analysis of a gene cloned from Leptospira biflexa serovar patoc which complements an argE defect in Escherichia coli
The genus Leptospira, as a member of the order Spirochaetales, forms one of the most ancient evolutionary branches of the eubacteria. These spirochetes are morphologically and phys...
Cloning, expression and purification of Leptospira LigB antigen in Escherichia coli
Cloning, expression and purification of Leptospira LigB antigen in Escherichia coli
Leptospira is one of the most common zoonotic diseases in the tropics and subtropics. Humans are infected by exposure to Leptospira contained water or food sources. Leptospirosis u...
Nucleotide sequence analysis of the Leptospira biflexa serovar patoc rpsL and rpsG genes
Nucleotide sequence analysis of the Leptospira biflexa serovar patoc rpsL and rpsG genes
The Leptospira biflexa rpsL and rpsG genes were sequenced. Although similar in many respects, proteins encoded by these L. biflexa genes had several unusual features when compared ...
Evolution of Antimicrobial Resistance in Community vs. Hospital-Acquired Infections
Evolution of Antimicrobial Resistance in Community vs. Hospital-Acquired Infections
Abstract Introduction Hospitals are high-risk environments for infections. Despite the global recognition of these pathogens, few studies compare microorganisms from community-acqu...
PREVALENCE RATE AND CAUSES OF LEPTOSPIROSIS SEROVAR ON CATTLE AT GIWANGAN’S ABATTOIR OF YOGYAKARTA
PREVALENCE RATE AND CAUSES OF LEPTOSPIROSIS SEROVAR ON CATTLE AT GIWANGAN’S ABATTOIR OF YOGYAKARTA
Leptospirosis is a zoonotic disease caused by Leptospira bacteria. The disease was spreadout arround the world, especially in the tropical and subtropical regions included Indonesi...

Back to Top