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PFPI-like genes are expressed in Leishmania major but are pseudogenes in other Leishmania species.

Pyrococcus furiosus protease I (PFPI) is a multimeric cysteine peptidase from P. furiosus. Genome analyses indicate that orthologues are present in rather few other organisms, including Dictyostelium discoideum and several bacteria, Archaea and plants. An open reading frame (ORF) coding for a PFPI-like protein (PFP1) was identified in Leishmania major and Leishmania mexicana and full-length spliced and polyadenylated PFP1 mRNA detected for both species. Vestiges of a PFPI-like gene could also be identified in Leishmania braziliensis and Leishmania infantum, but no ORF remains owing to the presence of frame-shifts and stop codons. No evidence for a PFPI-like gene could be found in the syntenic region of Trypanosoma brucei or Trypanosoma cruzi, raising the possibility that the PFPI-like genes were acquired by a lateral gene transfer event after the divergence of trypanosomes and Leishmania. The gene may have subsequently degenerated into a pseudogene in some Leishmania species, owing to the loss of relevant biological function. However, antibodies raised against L. mexicana recombinant protein detected PFP1 in promastigote extracts of L. major, but not in L. mexicana promastigote or amastigote extracts. The expression of PFP1 in L. major suggests that PFP1 might contribute to the disease tropism that distinguishes this Leishmania species from others.

Amino Acid Sequence↗

DNA sequence analysis of two bovine immunoglobulin CH gamma pseudogenes.

A bovine calf liver DNA library in lambda 2001 bacteriophage has been screened with a human Ig gamma 4 heavy-chain constant-region gene probe. Four hybridizing clones have been identified, and the DNA sequences in two of these, which have high homology with CH gamma genes, are reported here. Within the bovine sequences, four separate exons can be identified, corresponding to the three CH domains and the hinge of gamma heavy-chain genes. Both of these genes contain atypical sequences around one or more of their exon/intron boundaries with consequent loss of splice sites, indicating that these are probably gamma pseudogenes. One sequence codes for a C-terminal peptide which matches the 18-mer C-terminal heavy-chain peptide of bovine serum IgG2, the other encodes a C-terminal peptide unknown in the bovine. These results suggest that evolutionary duplication of CH gamma genes has occurred in the bovine.

Amino Acid Sequence↗

The Xist RNA gene evolved in eutherians by pseudogenization of a protein-coding gene.

The Xist noncoding RNA is the key initiator of the process of X chromosome inactivation in eutherian mammals, but its precise function and origin remain unknown. Although Xist is well conserved among eutherians, until now, no homolog has been identified in other mammals. We show here that Xist evolved, at least partly, from a protein-coding gene and that the loss of protein-coding function of the proto-Xist coincides with the four flanking protein genes becoming pseudogenes. This event occurred after the divergence between eutherians and marsupials, which suggests that mechanisms of dosage compensation have evolved independently in both lineages.

Animals↗

The endosymbiont (Buchnera sp.) of the aphid Diuraphis noxia contains plasmids consisting of trpEG and tandem repeats of trpEG pseudogenes.

Most aphids are dependent for their survival on prokaryotic endosymbionts assigned to the genus Buchnera. Among the functions of Buchnera species is the synthesis of tryptophan, which is required by the aphid host. In Buchnera species from the aphid Diuraphis noxia, the genes for anthranilate synthase (trpEG) were found on a plasmid which consisted of seven tandem repeats of a 3.2-kb unit and one 2.6-kb unit which differed in containing a 0.6-kb deletion. One of the 3.2-kb units contained open reading frames corresponding to trpEG; the remaining units contained trpEG pseudogenes (psi). The nucleotide sequence upstream of trpE contained a region that has characteristics of an origin of replication (ori). Relative to trpB (a chromosomal gene), there were about two copies of the trpEG-containing plasmid. Comparisons of the nucleotide sequences of the 3.2-kb units containing trpEG and psi trpEG indicated that most changes occurred in a 700-nucleotide segment that included the region upstream of trpE and the portion of this gene coding for the N terminus. The consequence of these changes was the silencing of trpEG by inactivation of the putative promoter region and premature termination of the TrpE peptide. In contrast, the nucleotide sequence of the segment corresponding to ori was conserved in the units containing trpEG and psi trpEG. We offer a number of speculations on the evolutionary pressure in this lineage which resulted in the silencing of most of trpEG while still retaining the regions resembling ori.

Animals↗

One of the tightly clustered genes of the mouse surfeit locus is a highly expressed member of a multigene family whose other members are predominantly processed pseudogenes.

The mouse surfeit locus is unusual in that it contains a number of closely clustered genes (Surf-1, -2, and -4) that alternate in their direction of transcription (T. Williams, J. Yon, C. Huxley, and M. Fried, Proc. Natl. Acad. Sci. USA 85:3527-3530, 1988). The heterogeneous 5' ends of Surf-1 and Surf-2 are separated by 15 to 73 base pairs (bp), and the 3' ends of Surf-2 and Surf-4 overlap by 133 bp (T. Williams and M. Fried, Mol. Cell. Biol. 6:4558-4569, 1986; T. Williams and M. Fried, Nature (London) 322:275-279, 1986). A fourth gene in this locus, Surf-3, which is a member of a multigene family, has been identified. The poly(A) addition site of Surf-3 lies only 70 bp from the poly(A) addition site of Surf-1. Transcription of Surf-3 has been studied in the absence of the other members of its multigene family after transfection of a cloned genomic mouse DNA fragment, containing the Surf-3 gene, into heterologous monkey cells. Surf-3 specifies a highly expressed 1.0-kilobase mRNA that contains a long open reading frame of 266 amino acids, which would encode a highly basic polypeptide (23% Arg plus Lys). The other members of the Surf-3 multigene family are predominantly, if not entirely, intronless pseudogenes with the hallmarks of being generated by reverse transcription. The role of the very tight clustering on regulation of expression of the genes in the surfeit locus is discussed.

Amino Acid Sequence↗

The human repertoire of odorant receptor genes and pseudogenes.

The nose of Homo sapiens is a sophisticated chemical sensor. It is able to smell almost any type of volatile molecule, often at extraordinarily low concentrations, and can make fine perceptual discriminations between structurally related molecules. The diversity of odor recognition is mediated by odorant receptor (OR) genes, discovered in 1991 by Buck & Axel. OR genes form the largest gene families in mammalian genomes. A decade after their discovery, advances in the sequencing of the human genome have provided a first draft of the human OR repertoire: It consists of approximately 1000 sequences, residing in multiple clusters spread throughout the genome, with more than half being pseudogenes. Allelic variants are beginning to be recognized and may provide an opportunity for genotype-phenotype correlations. Here, I review the current knowledge of the human OR repertoire and summarize the limited information available regarding putative pheromone and taste receptors in humans.

Animals↗

Genomic organization of the bovine aromatase encoding gene and a homologous pseudogene as revealed by DNA fiber FISH.

In cattle, the CYP19 locus comprises the aromatase cytochrome P450-encoding gene (CYP19) and a homologous pseudogene (CYP19P1). It has been assigned to chromosome region 10q26. Cloning of genomic DNA revealed that the CYP19 gene covers more than 56 kb. Its precise extent is still unknown because the DNA spanning the untranslated first exon 1.1 and the coding region (exons 2 to 10) have not been isolated. Furthermore, the chromosome arrangement of closely linked CYP19 and CYP19P1 was also not clear. To establish a high resolution physical map of the entire CYP19 locus, fluorescence in situ hybridization to extended bovine genomic DNA fibers (fiber FISH) was performed. The results demonstrate (1) that the clone containing exon 1.1 is located about 19 kb upstream from the CYP19 coding region. (2) Within the chromosome region 10q26 CYP19 and CYP19P1 are arranged "tail-to-head", being separated by a distance of about 24 kb between the labeled clones. (3) The physical size of the bovine CYP19 locus amounts to a minimum of 130 kb.

Animals↗

The gene encoding the transcriptional repressor BERF-1 maps to a region of conserved synteny on mouse chromosome 16 and human chromosome 3 and a related pseudogene maps to mouse chromosome 8.

We have recently identified and characterized a Kruppel-like zinc finger protein (BERF-1), that functions as a repressor of beta enolase gene transcription. By interspecific backcross analysis the gene encoding BERF-1 was localized 4.7 cM proximal to the Mtv6 locus on mouse chromosome 16, and an isolated pseudogene was localized to mouse chromosome 8, about 5.3 cM distal to the D8Mit4 marker. Nucleotide sequence identity and chomosome location indicate that the gene encoding BERF-1 is the mouse homologue (Zfp148) of ZNF148 localized to human chromosome 3q21, a common translocation site in acute myeloid leukemia patients.

Animals↗

Molecular cloning of a SALL1-related pseudogene and mapping to chromosome Xp11.2.

SALL1 and SALL2 have been identified as two human homologs of the region-specific homeotic gene spalt (sal) of Drosophila, which encodes a zinc finger protein of characteristic structure. SALL1 has recently been found to be mutated in patients with Townes-Brocks syndrome (TBS, OMIM No. 107480). Here we report the isolation and mapping of another sal-like human gene, named SALL1P, on chromosome Xp11.2. This intronless gene closely resembles SALL1 but displays several mutations, suggesting that SALL1P represents a sal-related pseudogene. The high similarity of SALL1P to SALL1 is of considerable importance for mutation analysis of SALL1 in TBS.

Abnormalities, Multiple↗

Characterization of the human laminin beta2 chain locus (LAMB2): linkage to a gene containing a nonprocessed, transcribed LAMB2-like pseudogene (LAMB2L) and to the gene encoding glutaminyl tRNA synthetase (QARS).

The laminin beta2 chain is an important constituent of certain kidney and muscle basement membranes. We have generated a detailed physical map of a 110-kb genomic DNA segment surrounding the human laminin beta2 chain gene (LAMB2) on chromosome 3p21.3-->p21.2, a region paralogous with the chromosome 7q22-->q31 region that contains the laminin beta1 chain gene locus (LAMB1). Several CpG islands and a novel polymorphic microsatellite marker (D3S4594) were identified. The 3' end of LAMB2 lies 16 kb from the 5' end of the glutaminyl tRNA synthetase gene (QARS). About 20 kb upstream of LAMB2 we found a gene encoding a transcribed, non-processed LAMB2-like pseudogene (LAMB2L). The sequence of 1.75 kb of genomic DNA at the 3' end of LAMB2L was similar to exons 8-12 of the laminin beta2 chain gene. The LAMB2L-LAMB2-QARS cluster lies telomeric to the gene encoding the laminin-binding protein dystroglycan (DAG1).

Amino Acid Sequence↗

Localization of proviral integration sites (Mlvi-1, Mlvi-2, and Pvt-1) and the alpha-globin pseudogene, Hba-3ps, on murine chromosome 15.

In situ hybridization was applied to map different proviral integration sites on murine chromosome 15. The Moloney murine leukemia virus integration site 1, Mlvi-1, was assigned to 15D2, Mlvi-2 to 15A2-B1, and the plasmacytoma variant translocation site 1, Pvt-1, to 15D2-3. The alpha-globin pseudogene, Hba-3ps, was mapped in close proximity to Mlvi-1 in 15D2.

Animals↗

Assignment of the fucosidase pseudogene FUCA1P to chromosome region 2q31----q32.

FUCA1P is a pseudogene of the structural fucosidase gene FUCA1. The former has been mapped to human chromosome 2, whereas the latter has been localized to chromosome 1p34----p36. We have further localized FUCA1P to chromosomal band 2q31----q32 by fluorescent in situ hybridization and digital imaging microscopy. This localization was confirmed by linkage analysis between FUCA1P and the COL3A1 gene in 2q24----q32 which gave maximal lod scores of 4.03 at 3% recombination.

Cells, Cultured↗

Regional assignment of the human immunoglobulin processed pseudogene C epsilon 3 (IGHEP2) to 9p24.2-->p24.1 by fluorescence in situ hybridization.

The human immunoglobulin processed pseudogene C epsilon 3 (IGHEP2), which was assigned to chromosome 9 by somatic cell hybrid analysis, has not been regionally localized as yet. In this study, using fluorescence in situ hybridization (FISH) combined with conventional QFQ-, RBG- or GTG-banding, IGHEP2 was assigned to the p terminus region of chromosome 9, at band 9p24.2-->p24.1. This result suggests that the C epsilon 3 gene is a novel telomeric DNA marker useful not only for constructing the physical map of human chromosome 9 but also for cytogenetic analyses such as cryptic translocations. In addition, comparative mapping of this gene in other catarrhine primates would contribute to investigations of human and other primate karyotype evolution.

Cells, Cultured↗

Human gp130 transducer chain gene (IL6ST) is localized to chromosome band 5q11 and possesses a pseudogene on chromosome band 17p11.

Human gp130 (IL6ST) is one of the most widely used chains of the cytokine receptor family. Indeed, it is involved in signal transduction of interleukin-6, interleukin-11, leukemia inhibitory factor, oncostatin M, and ciliary neurotrophic factor. In a previous report, IL6ST was assigned to chromosomes 5 and 17. Here we specify the chromosomal sublocalization of IL6ST and show that the sequence detected on 17p11 corresponds, in fact, to a nontranscribed pseudogene, whereas the active gene is located at chromosome band 5q11.

Antigens, CD↗

Molecular anatomy of human chromosome 9: comparative mapping of the immunoglobulin processed pseudogene C epsilon 3 (IGHEP2) in primates.

Karyotypic homology in relation to human chromosome 9 (HSA 9) was studied through comparative mapping of the immunoglobulin-processed pseudogene C epsilon 3 (IGHEP2) in primates. IGHEP2, which has been mapped to 9p24.2 --> p24.1 in the human genome, was assigned to PTR 11q34 (common chimpanzee), PPA 11q34 (pygmy chimpanzee), PPY 13q16 (orangutan), HLA 8qter (white-handed gibbon), HAG 8qter (agile gibbon), and MFU 14q22 (Japanese macaque) by fluorescence in situ hybridization. To verify the breakpoints of presumed pericentric inversions on the ancestral great ape chromosomes, three DNA markers on HSA 9, cCI9-37 (9q22.1 --> q22.2), cCI9-135 (9q22.32 --> q22.33), and cCI9-208 (9p13.3 --> p13.2), were also assigned to PTR/PPA 11p11 (cCI9-37 and 135), PTR/PPA 11q22 (cCI9-208), PPY 13q22 (cCI9-37 and 135), and PPY 13q12 (cCI9-208). These data more clearly define the position of the breakpoints of pericentric inversions that occurred in the human-chimp ancestral and chimpanzee ancestral chromosomes and support the hypothesis of HSA 9 genesis previously derived from banding analyses of HSA 9 and its homologs.

Animals↗

Structures and chromosome locations of the human MEF2A gene and a pseudogene MEF2AP.

The MEF2 family of transcription factors control the expression of muscle-specific and mitogen-induced genes. Here we describe the isolation and structure of the human MEF2A gene. The protein coding region of MEF2A is divided by 10 introns. The 3' untranslated region (UTR) is 3.7 kb in length, and it contains a region that is highly homologous with a portion of the 3' UTR of Xenopus MEF2A. A partially processed pseudogene (MEF2AP) corresponding to MEF2A was also isolated and characterized. Human MEF2A was mapped by fluorescence in situ hybridization to chromosome 15q26, and MEF2AP was mapped to chromosome 1q24 --> q25.

Animals↗

Structure and chromosomal assignment of the murine sterol carrier protein 2 gene (Scp2) and two related pseudogenes by in situ hybridization.

The murine sterol carrier protein 2 gene (Scp2) has been mapped to chromosome 4C5-->D1 by in situ hybridization. This location is syntenic with the locus of SCP2 on human chromosome 1p32. We found the overall structure of murine Scp2 to be identical to that of the human SCP2 gene. In addition, two Scp2 pseudogenes have been isolated and mapped to chromosomes 3H2-->4 and 9F.

Animals↗

FISH localization of the human Y-homolog of protein kinase PRKX (PRKY) to Yp11.2 and two pseudogenes to 15q26 and Xq12-->q13.

Recently, we reported the isolation of a new subfamily of serine-threonine protein kinases. This subfamily was shown to consist of at least four members. Sequencing and FISH mapping of all 4 members now reveals that the Y-homolog (PRKY) of the previously mapped PRKX gene (Xp22.3) is located in Yp11.2, in close vicinity to AMELY. The other two copies reside on Xq12-->q13 (PRKXP2) and 15q26 (PRKXP1, containing CA repeat STS D15S87) and represent pseudogenes.

Base Sequence↗