A complete list of molecular components for immune system function is now available with the completion of the human and mouse genome sequences. However, identification and functional annotation of genes involved in immunological processes require a discovery methodology that can efficiently and broadly analyze the complex interplay of these components in vivo. Our recent experience indicates that genome-wide chemical mutagenesis in the mouse is an extremely powerful methodology for the identification of genes required for complex immunological processes
In vivo research is critical to the functional dissection of multi-organ systems and whole organism ...
By developing a high-density murine immunophenotyping platform compatible with high-throughput genet...
Gene-expression profiling has become a mainstay in immunology, but subtle changes in gene networks r...
AbstractA complete list of molecular components for immune system function is now available with the...
The human and mouse genome sequences bring closer the goal of understanding how characteristics of a...
Infectious diseases are responsible for over 25% of deaths globally, but many more individuals are e...
As the human genome project approaches completion, the challenge for mammalian geneticists is to dev...
The breadth of genetic diversity in the mammalian immune response stands out amongst the ubiquity of...
The draft sequence of the human and mouse genomes provides an unparalleled opportunity for understan...
The worldwide effort to completely sequence the human and mouse genome will be accomplished within t...
Although mutation and natural selection have given rise to our immune system, a well-placed mutation...
With the completion of the first draft of the human genome sequence, the next major challenge is ass...
In random chemical mutagenesis, gene discovery is driven by phenotypes rather than by hypotheses. A ...
peer reviewedA major challenge in post-genomics is the systematic determination of mammalian gene fu...
The Human Genome Project has generated nucleotide sequences from an estimated 80,000 to 100,000 gene...
In vivo research is critical to the functional dissection of multi-organ systems and whole organism ...
By developing a high-density murine immunophenotyping platform compatible with high-throughput genet...
Gene-expression profiling has become a mainstay in immunology, but subtle changes in gene networks r...
AbstractA complete list of molecular components for immune system function is now available with the...
The human and mouse genome sequences bring closer the goal of understanding how characteristics of a...
Infectious diseases are responsible for over 25% of deaths globally, but many more individuals are e...
As the human genome project approaches completion, the challenge for mammalian geneticists is to dev...
The breadth of genetic diversity in the mammalian immune response stands out amongst the ubiquity of...
The draft sequence of the human and mouse genomes provides an unparalleled opportunity for understan...
The worldwide effort to completely sequence the human and mouse genome will be accomplished within t...
Although mutation and natural selection have given rise to our immune system, a well-placed mutation...
With the completion of the first draft of the human genome sequence, the next major challenge is ass...
In random chemical mutagenesis, gene discovery is driven by phenotypes rather than by hypotheses. A ...
peer reviewedA major challenge in post-genomics is the systematic determination of mammalian gene fu...
The Human Genome Project has generated nucleotide sequences from an estimated 80,000 to 100,000 gene...
In vivo research is critical to the functional dissection of multi-organ systems and whole organism ...
By developing a high-density murine immunophenotyping platform compatible with high-throughput genet...
Gene-expression profiling has become a mainstay in immunology, but subtle changes in gene networks r...