Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: EC:2.7.7.49 (reverse transcriptase)
31,746 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

The cardiac (versus retinal rod) Na/Ca exchanger gene has been cloned, sequenced and shown by RNA analysis to be present in diverse tissues. Analysis of published sequences shows that a single isoform is found in heart tissue from many species (NACA1 isoform). We provide evidence here by ribonuclease (RNase) protection assays and by reverse transcriptase-polymerase chain reaction (PCR) amplification with sequence analysis that a new isoform encoding the Na/Ca exchanger is present in renal tissue. This isoform (NACA3) reveals a 7-amino acid deletion in the tested region compared with the NACA2 isoform described by Reilly and Shugrue [Am. J. Physiol. 262 (Renal Fluid Electrolyte Physiol. 31): F1105-F1109, 1992] and is the dominant exchanger transcript in kidney. Analysis of the sequence of all isoforms indicates that the differences in the isoforms reside in the large intracellular loop region of the protein. Alternative splicing of a single Na/Ca exchanger message may be responsible for these tissue-specific transcripts.
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PMID:Na/Ca exchanger isoforms expressed in kidney. 769 82

In order to determine molecules involved in the differentiation and proliferation of human CD8(+) cells, two ex vivo expansion models were established: coculture of freshly purified human CD8(+) cells with irradiated autologous feeders (AF) or stimulation with anti-CD3. Two different proliferation kinetics of CD8(+) cells and expression patterns of CD57 were observed between these conditions. Differential display reverse transcriptase-polymerase chain reaction was applied to investigate the differential expression of mRNA species between CD8(+) CD57(+) and CD8(+) CD57(-) populations. A differentially expressed RNA species called alpha nascent polypeptide associated complex (alpha NAC) was found at a higher level in CD8(+) CD57(-) cells than in CD8(+) CD57(+) cells. In the presence of AF, the expression of alpha NAC was reduced on culturing whilst proliferation increased. Similarly, in cultures stimulated with anti-CD3, alpha NAC reverted to its inactive form and differentiation and proliferation increased. Using a phosphorothioate-modified oligodeoxynucleotide antisense directed specifically against alpha NAC mRNA, protein expression was inhibited and increased CD8(+) cell proliferation and CD25 expression were observed irrespective of the culture conditions. This suggests that alpha NAC protein is antiproliferative molecule. This is the first description of the function of the alpha NAC protein in human CD8(+) T cells.
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PMID:Investigation of alpha nascent polypeptide-associated complex functions in a human CD8(+) T cell ex vivo expansion model using antisense oligonucleotides. 1519 7