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Analysis of the 5' region of PMS2 reveals heterogeneous transcripts and a novel overlapping gene.

The PMS2 gene encodes a protein that is involved in DNA mismatch repair and is mutated in a subset of patients with hereditary nonpolyposis colon cancer (HNPCC). The previously published PMS2 cDNA sequence lacks an upstream in-frame stop codon preceding the presumptive initiating methionine. To evaluate the 5' terminus of the PMS2 coding region further, we isolated additional cDNA clones, RT-PCR products, and the corresponding 5' genomic segment of the PMS2 locus. The PMS2 gene transcripts were found to have heterogeneous but colinear 5' termini, one of which contained an in-frame termination codon preceding the initiating methionine. In addition, a novel gene encoding a 34.5-kDa polypeptide was found to initiate transcriptionally within PMS2 from the opposite strand.

Adenosine Triphosphatases↗

Overlapping gene structure of the human neuropeptide Y receptor subtypes Y1 and Y5 suggests coordinate transcriptional regulation.

The human y1 and y5 receptor genes are transcribed in opposite directions from a common promoter region on chromosome 4q31-q32. One of the alternately spliced 5' exons of the y1 receptor gene (1C) is also an integral part of the coding region of a novel neuropeptide Y receptor, Y5. Exon 1C of the y1 receptor gene, if translated from the opposite strand, encodes sequences corresponding to the large third intracellular loop of the Y5 receptor. The close proximity of the two neuropeptide Y receptor genes suggests that they have evolved from a gene duplication event with the small intron interrupting the coding sequence of the y1 gene being converted into a functional sequence within the y5 gene, while the reverse complementary sequence was utilized as an alternatively spliced 5' exon for the y1 gene. The transcription of both genes from opposite strands of the same DNA sequence suggests that transcriptional activation of one will have an effect on the regulation of gene expression of the other. As both Y1 and Y5 receptors are thought to play an important role in the regulation of food intake, coordinate expression of their specific genes may be important in the modulation of NPY activity.

Alternative Splicing↗

Overlapping gene expression profiles in rheumatoid fibroblast-like synoviocytes induced by the proinflammatory cytokines interleukin-1 beta and tumor necrosis factor.

OBJECTIVE AND DESIGN: The development of therapies directed against TNF alpha and IL-1 beta has underscored the importance of these cytokines in rheumatoid arthritis (RA). In this study, oligonucleotide microarrays were used to identify novel transcriptional events mediated by TNF alpha and IL-1 beta. METHODS: In this study we have used Affymetrix U95A GeneChips representing 12,600 full-length human genes to identify transcriptional events mediated by these cytokines. Fibroblast-like synoviocytes were cultured from rheumatoid synovium from RA patients and stimulated with TNF alpha and IL-1 beta. Gene transcript levels were determined using Affymetrix U95A GeneChips representing 12,600 full-length human genes. RESULTS: A large number of differentially regulated genes were identified (1.7% of array-displayed genes for TNF alpha and 2.4% for IL-1 beta), and the validity of the array protocol was subsequently confirmed using real-time PCR. The majority of the differentially expressed genes were regulated by both TNF alpha and IL-1 beta, reflecting the distal signaling pathways shared by these cytokines. A large number of novel TNF alpha and IL-1 beta-regulated genes were identified. CONCLUSIONS: A panel of novel TNF alpha- and IL-1 beta-regulated genes was identified, and these are promising candidates for further study in relation to RA and other inflammatory diseases.

Adult↗

Gene overlap results in a viral protein having an RNA binding domain and a major coat protein domain.

L-A double-stranded RNA (dsRNA) replicates in vivo in yeast in a conservative, asynchronous (first [+] strand then [-] strand), intraviral process. New particles are formed by packaging (+) strands. Added viral (+) single-stranded RNA (ssRNA) is specifically bound by empty virus-like particles (VLPs) and, in a reaction requiring a host factor, is converted in vitro to dsRNA. We find that the isolated binding complex replicates only if it was formed in the presence of the host factor. The VLP minor 180 kd protein, but not the major coat protein, has ssRNA binding activity on Western blots. The 180 kd protein shares a common antigenic domain with the major coat protein, the latter known to be encoded by L-A dsRNA. The 180 kd protein, but not the major coat protein, also shares an antigenic domain with a sequence encoded by the 3' end of the L-A (+) strand. Thus the 180 kd protein is also encoded by L-A dsRNA and consists of a major coat protein domain and a ssRNA binding domain.

Amino Acid Sequence↗

Diverse expression of overlapping genes: the Drosophila Eip28/29 gene and its upstream neighbors.

The Eip28/29 gene of Drosophila is known to be regulated by the steroid hormone ecdysone in Kc cells and other cell lines. An investigation of Eip28/29 gene expression in intact animals has led to the discovery of two new genes on its 5' flank. Together these three genes generate at least seven distinct transcripts with diverse patterns of developmental expression. gonadal (gdl) is transcribed on the same strand as Eip28/29 and is expressed in two modes. gdlM transcripts, observed exclusively in the testes, are 1200 and 1500 N long, differing by their polyadenylation site but probably otherwise identical; gdlF transcripts are 900 and 1200 N long and share their terminal exons with the two gdlM transcripts. In adults they are exclusively ovarian, but they are also present in early embryos and, at a lower abundance, in Kc cells. In each mode, the longer transcript results from use of a polyadenylation site within the 5' exon of Eip28/29. The shared region includes 3' noncoding sequences of gdl transcripts and 5' flanking DNA and 5' noncoding sequences of Eip28/29. gdl expression in Kc cells is, however, unaffected by ecdysone. z600 is more distal to Eip28/29 but still contained at least in part within the 2 kb upstream of that gene. Its 600 N transcript is expressed predominantly during the first few hours of embryogenesis. Finally, the Eip28/29 transcripts are present at low levels during most developmental stages.

Animals↗