Systems Immunology
The advance of systems biology approaches now means that much of the immune response to pathogens and vaccines can be assessed. Modern immunologists have at their disposal an arsenal of high-throughput technologies and tools that generate data relating the quantities of genes, metabolites and proteins within immune cells. The challenge posed is how to interpret this abundance of data to accurately understand and predict the immune response. Systems immunology is the discipline that uses computational and mathematical approaches to integrate these measurements and explain the nonintuitive interactions between biological components. In this chapter we will provide an overview of this interdisciplinary approach, its challenges, and highlight some of the applications of systems biology to assess the complexity of our immune system.
Authors
Melissa Lever; Thiago C. Hirata; Pedro S. T. Russo; Helder I. Nakaya
External link
Publication Year
Publication Journal
Associeted Project
Systems Immunology of Human Diseases
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As antisense RNA gets intronic.As antisense RNA gets intronic.
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Androgen responsive intronic non-coding RNAs.Androgen responsive intronic non-coding RNAs.
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Conserved tissue expression signatures of intronic noncoding RNAs transcribed from human and mouse loci.Conserved tissue expression signatures of intronic noncoding RNAs transcribed from human and mouse loci.
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The intronic long noncoding RNA ANRASSF1 recruits PRC2 to the RASSF1A promoter, reducing the expression of RASSF1A and increasing cell proliferation.The intronic long noncoding RNA ANRASSF1 recruits PRC2 to the RASSF1A promoter, reducing the expression of RASSF1A and increasing cell proliferation.
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Antisense intronic non-coding RNA levels correlate to the degree of tumor differentiation in prostate cancer.Antisense intronic non-coding RNA levels correlate to the degree of tumor differentiation in prostate cancer.
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