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S Henrichwark

Publications and source records attributed to S Henrichwark.

5 recordsLinked to original sources

Expression databases--resources for pharmacogenomic R&D.

This review aims to outline the primary biological databases that are being generated to understand fundamental biology, identify new drug targets, and to look at compound profiling in a new light. We will give a brief overview of four of the main areas being studied in molecular biology: genomics, pharmacogenomics, pharmacogenetics and proteomics. Looking initially at each data set and some of its potential applications, we will go on to describe some of the potentially enormous advantages gained by fully integrating these data sets.

Animals↗

Somatic hypermutation of the T cell receptor V beta gene in microdissected splenic white pulps from HIV-1-positive patients.

Somatic mutation of rearranged immunoglobulin V genes occurs in germinal centers (GC), resulting in affinity maturation of the immune response. Rearranged T cell receptor (TCR) genes were thought to be excluded from this process despite similarities in their gene structure. Somatic mutations were found among TCR V alpha (TCRAV) chains of antigen-specific T cells localized in GC of mice. Here, somatically mutated TCR V beta 3 (TCRBV) chains are identified among microdissected splenic white pulps from HIV-positive individuals. Both the frequency and the nature of the base substitutions were found to be similar to those of mutated immunoglobulin VH genes. This was true for intrinsic mutations in the TCR framework regions as well as for mutations underlying selective pressures in the TCRBV5 gene segment. The concentration of mutations and a preference for replacement mutations in complementarity determining regions of expanded clones were indicative of a positive selection process.

Base Sequence↗

Clonal expansion of T cells and HIV genotypes in microdissected splenic white pulps indicates viral replication in situ and infiltration of HIV-specific cytotoxic T lymphocytes.

Human immunodeficiency virus (HIV) replication and T cell proliferation was investigated in situ by a PCR based analysis of individual microdissected splenic white pulps. Founder effects, revealed by an exquisite compartmentalization of HIV genotypes and T cells, indicated the recruitment of latently infected CD4+ T cells through highly localized antigen presentation, rather than the infection of CD4+ T lymphoblasts by blood borne virus or immune complexes. HIV infected white pulps could be infiltrated by HIV specific cytotoxic T lymphocytes, so implicating them in CD4+ T cell destruction in vivo. Together these data describe an iterative and deleterious mechanism of antigen driven T cell recruitment and activation, HIV replication and spread, with consequent destruction of the newly infected cells.

Amino Acid Sequence↗

HIV and T cell expansion in splenic white pulps is accompanied by infiltration of HIV-specific cytotoxic T lymphocytes.

Human immunodeficiency virus (HIV) replication and T cell proliferation were investigated in situ by a PCR-based analysis of individual microdissected splenic white pulps. Founder effects, revealed by an exquisite compartmentalization of HIV genotypes and T cells, indicated the recruitment of latently infected CD4+ T cells through highly localized antigen presentation rather than the infection of CD4+ T lymphoblasts by blood-borne virus or immune complexes. HIV-infected white pulps could be infiltrated by HIV-specific cytotoxic T lymphocytes, thereby implicating them in CD4+ T cell destruction in vivo. Together these data describe an iterative and deleterious mechanism of antigen-driven T cell recruitment and activation, as well as HIV replication and spread, with consequent destruction of the newly infected cells.

Amino Acid Sequence↗