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Molecular cloning, cDNA sequence, and chromosomal assignment of the human radixin gene and two dispersed pseudogenes.

Radixin is a cytoskeletal protein that may be important in linking actin to the plasma membrane. Recent cloning of the murine and porcine radixin cDNAs revealed a protein highly homologous to ezrin and moesin. We have cloned and sequenced the human radixin cDNA and found the predicted amino acid sequence for the human protein to be nearly identical to those predicted for radixin in the two other species. By Southern analyses of Chinese hamster x human somatic cell hybrid DNA and of PCR products derived from hybrids, the coding gene (RDX) was mapped to 11q. Fluorescence chromosomal in situ hybridization with a cDNA plasmid further localized this gene to band 11q23. However, PCR amplification with "radixin-specific" primers on the hybrid DNA panel yielded an additional, very similar DNA sequence that was further characterized by direct sequencing of PCR products. This sequence represents a truncated version and the respective locus (RDXP2) was assigned to Xp21.3. Furthermore, by employing a different set of primers, a third sequence was found that was 90% identical to the radixin sequence but contained termination codons and seemed to lack introns. This pseudogene (RDXP1) was mapped to 11p by Southern and PCR analyses.

Amino Acid Sequence↗

The high-affinity interleukin 8 receptor gene (IL8RA) maps to the 2q33-q36 region of the human genome: cloning of a pseudogene (IL8RBP) for the low-affinity receptor.

The selective amplification by polymerase chain reaction (PCR) of gene fragments corresponding to new G-protein-coupled receptors resulted in the cloning of 18 orphan members of this gene family. Of these, three human clones amplified from genomic DNA (HGMP03, HGMP04, and HGMP05) were shown to be structurally related. Genomic clones corresponding to HGMP03 and HGMP05 were isolated and their putative coding region sequenced. Following the characterization of two interleukin 8 (IL-8) receptors, HGMP03 appeared to encode the high-affinity IL-8 receptor, whereas the partial clone HGMP04 encodes the low-affinity IL-8 receptor. Comparison with the cDNA sequence suggests that the high-affinity receptor gene is split by an intron in the 5' untranslated region. The high-affinity receptor gene was mapped by in situ hybridization to the 2q33-q36 region of the human genome. The HGMP05 locus turned out to be a pseudogene for the low-affinity IL-8 receptor (87% identity), with multiple frameshifts and point mutations introducing stop codons. Southern blotting on genomic DNA did not allow the further detection of related loci in the human genome.

Amino Acid Sequence↗

The isolation and characterization of the bovine cytochrome b5 gene, and a transcribed pseudogene.

This is the first isolation and characterization of a cytochrome b5(b5) gene. The bovine b5 gene is quite large, spanning about 28 kb and contains six exons. One of these exons appears to code for a reticulocyte-specific sequence similar to that described for human and rabbit b5. All of the splicing junctions conform to the GT-AG consensus rule. The 5' flanking sequence has no obvious TATA box, two CAAT boxes, and contains several G:C-rich SpI motifs indicative of a house-keeping gene. In reticulocyte mRNA we found evidence for a transcribed b5 pseudogene, but could not detect sequences coding for the soluble form of b5. We conclude that the soluble form of b5 is derived from the membrane-bound b5 by a post-translational mechanism.

Amino Acid Sequence↗

The polymorphic ADP-ribosyltransferase (NAD+) pseudogene 1 in humans interrupts an endogenous pol-like element on 13q34.

A recently constructed chromosome 13-enriched library was used to isolate the entire human ADP-ribosyltransferase (NAD+) pseudogene 1 gene (ADPRTP1) on 13q34. Recently, ADPRTP1 was shown to detect a restriction fragment length polymorphism that was associated with a predisposition to cancer. The complete sequence of the ADPRTP1 (3808 bases) was determined and found to resemble an intronless cDNA, including 137 bases of the 5' untranslated region and a short poly(A) tail. A previously uncharacterized, endogenous pol-like element (1.53 kb) in which the DNA sequences were interrupted by the polymorphic ADPRTP1 was identified. The solitary pol-related retroviral element may represent a multimember family of viral-like DNA sequences dispersed throughout the human genome. Altogether a 9.25-kb genomic region that also encompassed two Alu elements and the long-terminal repeat-like element of the "O"-LTR family was characterized.

Amino Acid Sequence↗

Organization and chromosomal assignment of two human PAG gene loci: PAGA encoding a functional gene and PAGB a processed pseudogene.

A cDNA, designated PAG, was recently isolated by differential cloning between an untransformed and a ras-transformed human mammary cell line. Higher levels of expression were found to be associated with cell proliferation. The absence in the pag protein of known consensus sequence, as well as its close relationship with a gene product involved in the differentiation of a mouse erythroleukemia cell line, has suggested that the PAG gene belongs to a family of genes associated with cell proliferation and differentiation. To further characterize this gene, a physical map has been established from a human genomic cosmid library. The PAG gene spans 13 kb of DNA and contains six exons. The promoter region is GC-rich and contains a TFIID motif located 25 nucleotides upstream of the potential site for initiation of transcription and potential recognition sites for a variety of trans-acting factors. Using fluorescence in situ hybridization, the PAG gene was mapped to human chromosome band 1p34.1. A pseudogene was also isolated, sequenced, and mapped to human chromosome band 9p22.

Base Sequence↗

Mouse thioredoxin gene maps on chromosome 4, whereas its pseudogene maps on chromosome 1.

Thioredoxins are involved in various biochemical systems and mediate both redox and nonredox functions. In mammalian cells, thioredoxin functions as an endogenous glucocorticoid receptor activating factor and as an adult T-cell leukemia-derived factor (ADF) that stimulates expression of interleukin-2 receptor in human T-cell leukemia virus (HTLV)-I transformed T cells. We have mapped the thioredoxin gene (Txn) and its processed pseudogene (Txn-ps1) in the mouse using a panel of interspecific backcross mice. Txn maps to Chr 4, whereas Txn-ps1 maps to the proximal region of Chr 1.

Animals↗

The gene coding for the beta-chain of C4b-binding protein (C4BPB) has become a pseudogene in the mouse.

C4BP beta is one of the two polypeptides that in humans compose the plasma glycoprotein C4b-binding protein (C4BP). C4BP beta binds the anticoagulant vitamin K-dependent protein S. Two, nonmutually exclusive, roles have been proposed for the C4BP-protein S interaction. It has been suggested to play a role in the control of the protein C anticoagulatory pathway. In addition, it may serve an important role in localizing C4BP to the surface of injured or activated cells. While the physiological significance of C4BP-protein S interaction is unclear, it has clinical relevance because elevated plasma levels of C4BP are associated with increased risk for thromboembolic disorders in humans, due to an inactivation of the protein C anticoagulatory pathway. Using a human C4BP beta cDNA probe, we have isolated and characterized a genomic DNA fragment that includes the murine C4BPB gene. Murine C4BPB is a single-copy gene that maps close to the C4BPA gene in chromosome 1. It contains two exons homologous to the exons coding for the SCR-1 and SCR-2 repeats of the human C4BP beta polypeptide chain. Sequence analysis of the C4BPB exons in the Mus musculus inbred strains CBA, Balb/c, and C57BL/6, in pen-bred Swiss mice, and in Mus spretus demonstrated the presence of two in-phase stop codons that are incompatible with the expression of a functional C4BP beta polypeptide. Thus, the characterization of the murine C4BPB gene documents the peculiar situation of a single-copy gene that is functional in humans but has become a pseudogene in the mouse.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

The first intron of human c-fms proto-oncogene contains a processed pseudogene (RPL7P) for ribosomal protein L7.

During sequence analysis of the first intron of the human c-fms oncogene, we identified an open reading frame encoding the ribosomal protein L7 (RPL7). The presence of this sequence within intron 1 of the c-fms gene was confirmed by Southern blot hybridization and by sequence analysis of two independent cosmid clones (cos2-e and cos1-22) that span the human genomic c-fms locus. The RPL7 sequence was detected in a region of sequence overlapped by the cos2-e and cos1-22 cosmid clones but oriented opposite to the c-fms gene. We demonstrated that the sequence is identical to the full-length RPL7 cDNA sequence, but lacks any recognizable introns, has a 30-bp poly(A) tail, and is bracketed by two perfect direct repeats of 14 bp. We also showed that despite the fact that the 5' flanking region of the RPL7 sequence contains a potential TATA box upstream of an intact open reading frame, this pseudogene (RPL7P) is not actively transcribed.

Base Sequence↗

Genomic organization of the human gene (CA5) and pseudogene for mitochondrial carbonic anhydrase V and their localization to chromosomes 16q and 16p.

Carbonic anhydrase V (CA V) is expressed in mitochondrial matrix in liver and several other tissues. It is of interest for its putative roles in providing bicarbonate to carbamoyl phosphate synthetase for ureagenesis and to pyruvate carboxylase for gluconeogenesis and its possible importance in explaining certain inherited metabolic disorders with hyperammonemia and hypoglycemia. Following the recent characterization of the cDNA for human CA V, we report the isolation of the human gene from two lambda genomic libraries and its characterization. The CA V gene (CA5) is approximately 50 kb long and contains 7 exons and 6 introns. The exon-intron boundaries are found in positions identical to those determined for the previously described CA II, CA III, and CA VII genes. Like the CA VII gene, CA5 does not contain typical TATA and CAAT promoter elements in the 5' flanking region but does contain a TTTAA sequence 147 nucleotides upstream of the initiation codon. CA5 also contains a 12-bp GT-rich segment beginning 13 bp downstream of the polyadenylation signal in the 3' untranslated region of exon 7. FISH analysis allowed CA5 to be assigned to chromosome 16q24.3. An unprocessed pseudogene containing sequence homologous to exons 3-7 and introns 3-6 was also isolated and was assigned by FISH analysis to chromosome 16p11.2-p12.

Amino Acid Sequence↗

LIS2, gene and pseudogene, homologous to LIS1 (lissencephaly 1), located on the short and long arms of chromosome 2.

We report here the isolation of a novel cDNA, designated LIS2, that maps to chromosome 2p11.2 by in situ hybridization and demonstrates extremely high sequence similarity to the recently identified LIS1 gene involved in Miller-Dieker lissencephaly at 17p13.3. Specific probes for LIS2 revealed a pattern of expression resembling that of LIS1, although LIS2 is less abundant. Surprisingly, LIS2 detected an additional, higher molecular weight transcript in adult skeletal muscle. Isolated YAC clones and P1 clones mapped by in situ hybridization to two loci on chromosome 2,2p11.2 and 2q13-q14. This hybridization was due to the existence of LIS2 pseudogene LIS2P on the long arm of chromosome 2.

1-Alkyl-2-acetylglycerophosphocholine Esterase↗

Structure and chromosomal localization of the GPI-anchor synthesis gene PIGF and its pseudogene psi PIGF.

Posttranslational modification by the GPI glycolipid anchor is essential for the surface expression of many membrane proteins. Defect of GPI biosynthesis due to somatic mutation in the hematopoietic stem cell is the basis for an acquired genetic disease, paroxysmal nocturnal hemoglobinuria (PNH). Previously, an X-linked gene PIGA (phosphatidylinositol glycan class A), which participates in the first step of the biosynthesis, was shown to be mutated in abnormal cells from all 60 patients with PNH. The cDNA of another GPI synthesis gene PIGF was previously cloned, but it is not involved in pathogenesis of PNH. In the present study, we have analyzed PIGF genomic clones. The PIGF gene contained six exons spanning about 40 kb and was located to the short arm of chromosome 2 at 2p16-p21. The frequency of mutations on both alleles of PIGF should be much lower than that of mutation in the X-linked PIGA, accounting for a lack of involvement of PIGF in PNH. We also identified the processed pseudogene of PIGF (psi PIGF) and mapped it to 5q35.

Base Sequence↗

The IL-9 receptor gene (IL9R): genomic structure, chromosomal localization in the pseudoautosomal region of the long arm of the sex chromosomes, and identification of IL9R pseudogenes at 9qter, 10pter, 16pter, and 18pter.

Cosmids containing the human IL-9 receptor (R) gene (IL9R) have been isolated from a genomic library using the IL9R cDNA as a probe. We have shown that the human IL9R cDNA as a probe. We have shown that hte human IL9R gene is composed of 11 exons and 10 introns, stretching over approximately 17 kb, and is located within the pseudoautosomal region of the Xq and Yq chromosome, in the vicinity of the telomere. Analysis f the 5' flanking region revealed multiple transcription initiation sites as well as potential binding motifs for AP1, AP2, AP3, Sp1, and NF-kB, although this region lacks a TATA box. Using the human IL9R cosmid as a probe to perform fluorescence in situ hybridization, additional signals were identified in the subtelomeric regions of chromosomes 9q, 10p, 16p, and 18p. IL9R homologs located on chromosomes 16 and 10 were completely sequenced. Although they are similar to the IL9R gene (approximately 90% identity), none of these copies encodes a functional receptor: none of them contains sequences homologous to the 5' flanking region or exon 1 of the IL9R gene, and the remaining ORFs have been inactivated by various point mutations and deletions. Taken together, our results indicate that the IL9R gene is located at Xq28 and Yq12, in the long arm pseudoautosomal region, and that four IL9R pseudogenes are located on 9q34, 10p15, 16p13.3, and 18p11.3, probably dispersed as the result of translocations during evolution.

Alternative Splicing↗

The mouse glutathione peroxidase Gpx2 gene maps to chromosome 12; its pseudogene Gpx2-ps maps to chromosome 7.

The GPX2 gene codes for GSHPx-GI, a glutathione peroxidase whose mRNA is readily detectable in the gastrointestinal tract. Although GPX2 is a single gene in humans, there are two genes in the mouse genome with homology to GPX2. By analyzing a panel of mouse interspecies DNA from the Jackson Laboratory's backcross resource, we have chromosomally mapped these two genes. One was mapped to the central region of mouse chromosome 12 between D12Mit4 and D12Mit5, near fos and Tgfb3. This region is homologous to human 14q24.1, where human GPX2 has been mapped, and most likely represents the functional mouse Gpx2 gene. The other Gpx2-like gene was mapped to mouse chromosome 7 between Pcsk3 and Hbb. We have isolated the latter gene from a P1 phage library. Its pseudogene nature is revealed by the sequence analysis: (a) it is intronless; (b) it has a single nucleotide deletion in the coding region; and (c) it has a poly(A) tail at its 3'-untranslated region.

Amino Acid Sequence↗

Genomic organization and chromosomal localization of a member of the MAP kinase phosphatase gene family to human chromosome 11p15.5 and a pseudogene to 10q11.2.

Mitogen-activated protein kinase phosphatases (MKPs) play a central role in a variety of signaling pathways. We recently described a novel murine MKP, M3/6, which is uniquely specific for c-Jun N-terminal kinase/stress-activated protein kinase and p38 kinase. Here we report the localization of the human orthologue of this gene, HB5, to within 150 kb of H19 on human chromosome 11p15.5. The gene consists of six exons. Two of the introns in HB5 are not found in other genes of this family, suggesting an evolutionary split between MKPs displaying specificity toward different MAP kinases. An intronless pseudogene is present on chromosome 10q11.2. Although 11p15.5 is an imprinted region, HB5 is almost entirely unmethylated on both alleles in lymphocytes. Chromosome 11p15 has been implicated in the development of a number of tumor types, including lung, a tissue known to express this gene. Loss of heterozygosity was found in one of eight informative lung tumors studied.

Alleles↗

The visual assignment of genes by fiber-fish: BTF3 protein homologue gene (BTF3) and a novel pseudogene of human RNA helicase A (DDX9P) on 13q22.

Chromosome 13 is one of the poorly mapped human chromosomes. As an example, only two cloned genes have been assigned to bands 13q22-q31. Our characterization of the critical region for the variant form of late infantile neuronal ceroid lipofuscinosis (vLINCL, locus definition CLN5) disease region on 13q22 resulted in the identification of the sequences encoding the BTF3 protein homologue gene (HGMW-approved symbol BTF3) and a novel pseudogene for RNA Helicase A (HGMW-approved symbol DDX9P). Precise visual assignment to the physical clones covering this region and the positional relationships of these genes were achieved by the use of tyramine enhancement of Fiber-FISH hybridization signals, demonstrating the power of this technique in efficient positioning of coding regions on the physical maps.

Chromosomes, Human, Pair 13↗

Genomic organization of the UBE3A/E6-AP gene and related pseudogenes.

The UBE3A gene encodes the E6-AP ubiquitin-protein ligase and has recently been shown to be mutated in Angelman syndrome patients who lack 15q11-q13 deletions or chromosome 15 paternal uniparental disomy. Previous UBE3A cDNA analysis has shown a coding region of approximately 2.6 kb and a 3'-untranslated region (UTR) of < 50 bp, whereas Northern analysis has indicated mRNA sizes of 5-8 kb. We have analyzed additional cDNA clones and provide evidence for an additional 0.5 kb of 5'-UTR and > 2 kb of 3'-UTR. We have established the genomic organization of UBE3A and the sequence of intron-exon borders. We have also mapped two highly homologous processed pseudogenes, UBE3AP1 and UBE3AP2, to chromosomes 2 and 21, respectively, and determined their genomic organization. These results will form the basis for studies of mutation and imprinting of UBE3A.

Base Sequence↗

Mapping of a novel human carbonyl reductase, CBR3, and ribosomal pseudogenes to human chromosome 21q22.2.

To find the genes contributing to Down syndrome, we constructed a 4-Mb sequence-ready map spanning chromosome 21q22.2 with megabase-sized cosmid/P1-derived artificial chromosome (PAC) contigs. The restriction map with rare cutting enzymes, followed by sequencing from the clustering sites, has defined CpG islands and revealed the genes associated with CpG islands (Accession No. D85771). Of these, two human carbonyl reductases (CBR; EC1.1.1.184) were found in a PAC 25P16 clone. CBR catalyzes the reduction of a large number of biologically and pharmacologically active carbonyl compounds to their corresponding alcohols and has been mapped in 21q22.1. To confirm these results, we sequenced the PAC clone in shotgun strategies and identified a novel carbonyl reductase, designated CBR3, 62 kb downstream from the original CBR. In addition, three ribosomal pseudogenes, L23a, S9, and L3, and some cDNAs with ESTs were mapped in the sequence. In conclusion, the sequence analysis for CpG islands predicted from the megabase-sized contigs will reveal and identify the genes involved in Down syndrome.

Alcohol Oxidoreductases↗

Characterization of the mouse Src homology 3 domain gene Sh3d2c on Chr 7 demonstrates coexpression with huntingtin in the brain and identifies the processed pseudogene Sh3d2c-ps1 on Chr 2.

Formation of intracellular protein complexes is often mediated by Src homology 3 domain-containing proteins interacting with proline-rich target sequences on other proteins. The Sh3d2c gene or its rat/human orthologs have been implicated in synaptic vesicle recycling due to interaction with dynamin I and synaptojanin in nerve terminals. In a yeast two-hybrid system, association with a huntingtin fragment containing an elongated stretch of polyglutamines was observed recently. By genetic mapping and fluorescence in situ hybridization we demonstrate the localization of Sh3d2c on mouse chromosome 7. A processed pseudogene of Sh3d2c, Sh3d2c-ps1, was identified and mapped to mouse chromosome 2. Using RNA in situ hybridization, we show that Sh3d2c is transcribed in various regions of the brain. The striatum, hippocampus, cortex, basal hypothalamus, brain stem, and cerebellum are the most prominent sites of expression. Because huntingtin and Sh3d2c are coexpressed in most regions of the brain, it can be speculated that there is a link between the association of huntingtin/Sh3d2c and the pathogenesis of Huntington disease.

Animals↗