Gene/Protein Disease Symptom Drug Enzyme Compound
Pivot Concepts:   Target Concepts:
Query: UMLS:C0282612 (PIN)
2,291 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Antibody to the human immunodeficiency virus (HIV)-1 principal neutralizing determinant (V3 loop) was measured by peptide enzyme-linked immunosorbent assay (ELISA) in cerebrospinal fluid (CSF) and paired serum samples of 21 HIV-seropositive patients. These patients had normal neurologic examinations and were without neurologic symptoms. Peptide ELISA demonstrated intrathecal antibody synthesis against the V3 loop of HIVMN, the V3 loop of HIVNY5, the V3 loop of HIVLAI, and the entire recombinant HIV-1MN gp120 in 21 of 21, 10 of 21, one of 21, and 12 of 21 patients, respectively. Biospecific interaction analysis (BIAcore), which requires only small amounts of CSF, was also used to detect anti-V3 CSF antibody. Fine mapping of linear epitopes within the V3 region was successful in three of five patients by Geysen PIN (PEPSCAN) ELISA and discordance between epitope specificity of CSF and serum antibody was found. While detection of CSF antibody against the V3 loop of HIVMN by peptide ELISA has been recently reported, we add to this finding using the peptide ELISA, PEPSCAN and BIAcore methodologies as well as measuring intrathecal antibody synthesis against V3 loops from HIV strains. Application of these techniques to future studies of anti-V3 antibody in CSF from persons receiving anti-HIV-1 immunizations may provide insight into the immunoregulation of the virus in the nervous system.
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PMID:Measurement of cerebrospinal fluid antibody to the HIV-1 principal neutralizing determinant (V3 loop). 768 46

Human monocytes/macrophages (M/M) are the major targets for human immunodeficiency virus type 1 (HIV-1) infection. To characterize the global effects of acute HIV-1 infection on gene expression in M/M, the expression levels of 550 host cell RNA transcripts in U937 human promonocytes at 2-3 days after HIV-1 infection were assessed using cDNA microarray analysis and were compared to those in the infected HUT78, a CD4+ T cell line. Confirmed by semiquantitative RT-PCR, our results showed that 12 genes were up-regulated and 26 genes were down-regulated in the infected U937 cells at 2-3 days post-infection, whereas 8 genes were up-regulated and 20 genes were down-regulated in the infected HUT78 cells at 2-3 days post-infection. These genes encode a host of proteins with divergent functions in a variety of cellular processes including apoptosis (FAS, Fas ligand, PIN, HSP90beta, bcl-2, bcl-x), cell signal transduction (Ras, RGS1, IRF-1, STAT3), receptor-mediated signaling transduction (CD71, CD69, CD3delta), cell cycle and growth (c-myc, cytokines, kinase), transcriptional regulation (EWS, CREB-2), and chemotaxis (beta-chemokines, RANTES), supporting the general effects of HIV-1 infection on cells of different origin. Although most identified genes were regulated similarly in both infected cell lines, differences in gene regulation, such as c-myc, CD71, CD69, and beta-chemokines, between the two infected cell lines were also identified in this study. These differences may further our understanding of the pathogenicity of HIV and enable the discovery of novel therapeutic approach for AIDS.
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PMID:HIV-1 infection initiates changes in the expression of a wide array of genes in U937 promonocytes and HUT78 T cells. 1588 42