Abstract Computational analysis of eukaryotic promoters is one of the most difficult problems in computational genomics and is essential for understanding gene expression profiles and reverse-engineering gene regulation network circuits. Here I give a basic introduction of the problem and recent update on both experimental and computational approaches. More details may be found in the extended references. This review is based on a summer lecture given at Max Planck Institute at Berlin in 2005.</p
Identification of the mechanisms by which genes are regulated in eukaryotes is one of the principal ...
Living cells are the product of gene expression programs involving regulated transcription of thousa...
The dissertation focuses on developing computational methods to discover cis -elements in promote...
ABSTRACT : Computational analysis of eukaryotic promoters is one of the most difficult problems in c...
The DNA sequence of several higher eukaryotes is now complete, and we know the expression patterns o...
Computational prediction of eukaryotic promoters from the nucleotide sequence is one of the most att...
Computational prediction of eukaryotic promoters from the nucleotide sequence is one of the most att...
The availability of computational methods to identify and define the precise structure and location ...
Identification of the mechanisms by which genes are regulated in eukaryotes is one of the principal ...
Although much is known about gene expression regulation in both Prokaryotes and Eukaryotes, this com...
In this chapter, we shall describe the problem of promoter recognition. We begin with a brief introd...
Transcription is a vital and complicated process that is the first step leading to gene expression i...
The use of high density DNA arrays to monitor gene expression at a genome-wide scale constitutes a f...
Abstract: To understand most cellular processes, one must understand how genetic information is proc...
Transcriptional activity of genes depends on many factors like DNA motifs, conformational characteri...
Identification of the mechanisms by which genes are regulated in eukaryotes is one of the principal ...
Living cells are the product of gene expression programs involving regulated transcription of thousa...
The dissertation focuses on developing computational methods to discover cis -elements in promote...
ABSTRACT : Computational analysis of eukaryotic promoters is one of the most difficult problems in c...
The DNA sequence of several higher eukaryotes is now complete, and we know the expression patterns o...
Computational prediction of eukaryotic promoters from the nucleotide sequence is one of the most att...
Computational prediction of eukaryotic promoters from the nucleotide sequence is one of the most att...
The availability of computational methods to identify and define the precise structure and location ...
Identification of the mechanisms by which genes are regulated in eukaryotes is one of the principal ...
Although much is known about gene expression regulation in both Prokaryotes and Eukaryotes, this com...
In this chapter, we shall describe the problem of promoter recognition. We begin with a brief introd...
Transcription is a vital and complicated process that is the first step leading to gene expression i...
The use of high density DNA arrays to monitor gene expression at a genome-wide scale constitutes a f...
Abstract: To understand most cellular processes, one must understand how genetic information is proc...
Transcriptional activity of genes depends on many factors like DNA motifs, conformational characteri...
Identification of the mechanisms by which genes are regulated in eukaryotes is one of the principal ...
Living cells are the product of gene expression programs involving regulated transcription of thousa...
The dissertation focuses on developing computational methods to discover cis -elements in promote...