Javascript must be enabled to continue!
De novo assembly of potential linear artificial chromosome constructs capped with expansive telomeric repeats
View through CrossRef
Abstract
Background
Artificial chromosomes (ACs) are a promising next-generation vector for genetic engineering. The most common methods for developing AC constructs are to clone and combine centromeric DNA and telomeric DNA fragments into a single large DNA construct. The AC constructs developed from such methods will contain very short telomeric DNA fragments because telomeric repeats can not be stably maintained in Escherichia coli.
Results
We report a novel approach to assemble AC constructs that are capped with long telomeric DNA. We designed a plasmid vector that can be combined with a bacterial artificial chromosome (BAC) clone containing centromeric DNA sequences from a target plant species. The recombined clone can be used as the centromeric DNA backbone of the AC constructs. We also developed two plasmid vectors containing short arrays of plant telomeric DNA. These vectors can be used to generate expanded arrays of telomeric DNA up to several kilobases. The centromeric DNA backbone can be ligated with the telomeric DNA fragments to generate AC constructs consisting of a large centromeric DNA fragment capped with expansive telomeric DNA at both ends.
Conclusions
We successfully developed a procedure that circumvents the problem of cloning and maintaining long arrays of telomeric DNA sequences that are not stable in E. coli. Our procedure allows development of AC constructs in different eukaryotic species that are capped with long and designed sizes of telomeric DNA fragments.
Springer Science and Business Media LLC
Title: De novo assembly of potential linear artificial chromosome constructs capped with expansive telomeric repeats
Description:
Abstract
Background
Artificial chromosomes (ACs) are a promising next-generation vector for genetic engineering.
The most common methods for developing AC constructs are to clone and combine centromeric DNA and telomeric DNA fragments into a single large DNA construct.
The AC constructs developed from such methods will contain very short telomeric DNA fragments because telomeric repeats can not be stably maintained in Escherichia coli.
Results
We report a novel approach to assemble AC constructs that are capped with long telomeric DNA.
We designed a plasmid vector that can be combined with a bacterial artificial chromosome (BAC) clone containing centromeric DNA sequences from a target plant species.
The recombined clone can be used as the centromeric DNA backbone of the AC constructs.
We also developed two plasmid vectors containing short arrays of plant telomeric DNA.
These vectors can be used to generate expanded arrays of telomeric DNA up to several kilobases.
The centromeric DNA backbone can be ligated with the telomeric DNA fragments to generate AC constructs consisting of a large centromeric DNA fragment capped with expansive telomeric DNA at both ends.
Conclusions
We successfully developed a procedure that circumvents the problem of cloning and maintaining long arrays of telomeric DNA sequences that are not stable in E.
coli.
Our procedure allows development of AC constructs in different eukaryotic species that are capped with long and designed sizes of telomeric DNA fragments.
Related Results
tidk: a toolkit to rapidly identify telomeric repeats from genomic datasets
tidk: a toolkit to rapidly identify telomeric repeats from genomic datasets
Abstract
Summary
“tidk” (short for telomere identification toolkit) uses a simple, fast algorithm to scan long DNA reads ...
A Comprehensive Review on the Telomeric Repeat Sequence in Different Organisms
A Comprehensive Review on the Telomeric Repeat Sequence in Different Organisms
Telomeres protect the terminal ends of eukaryotic chromosomes, making them essential for genome stability, cellular senescence, and species evolution. These structures consist of t...
Length of Telomeric Repeats in Neuroblastoma: Correlation with Prognosis and Other Biological Characteristics
Length of Telomeric Repeats in Neuroblastoma: Correlation with Prognosis and Other Biological Characteristics
Telomeres are the physical ends of eukaryotic chromosomes. In view of reports of the reduction of telomeric repeats in human malignant tumors, we measured the lengths of telomeric ...
Diversity and evolution of telomere and subtelomere DNA sequences in insects
Diversity and evolution of telomere and subtelomere DNA sequences in insects
Abstract
In insects, two types of telomere length maintenance are known: telomerase-dependent, resulting in chromosome ends consisting of short nucleotide repeats (...
The Artificial
The Artificial
Orvell noted that despite the evolution of society, imitation and authenticity function as “compass points” that guide meaning-making and retain potency as humans continue to negot...
Telomeric small RNAs in the genus
Caenorhabditis
Telomeric small RNAs in the genus
Caenorhabditis
Abstract
Telomeric DNA is composed of simple tandem repeat sequences and has a G-rich strand that runs 5’ to 3’ towards the chromosome terminus. ...
Factors Affecting the Survival of Therapy Related AML/MDS, Secondary AML and De Novo AML
Factors Affecting the Survival of Therapy Related AML/MDS, Secondary AML and De Novo AML
Abstract
Introduction:
Patients exposed to cytotoxic agents are at a higher risk of developing therapy related AML and MDS (tAML/tMDS), and have poor ...
Genome assembly composition of the String “ACGT” array: a review of data structure accuracy and performance challenges
Genome assembly composition of the String “ACGT” array: a review of data structure accuracy and performance challenges
Background
The development of sequencing technology increases the number of genomes being sequenced. However, obtaining a quality genome ...

