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D L Mager

Publications and source records attributed to D L Mager.

At least 55 records · Page 3Linked to original sources

Splicing of a human endogenous retrovirus to a novel phospholipase A2 related gene.

As part of an investigation into the effects of endogenous retroviruses on adjacent genes, we have isolated a cDNA clone derived from the human teratocarcinoma cell line NTera2D1 representing a chimeric transcript in which an endogenous retrovirus-like element, RTVL-H, has been spliced to downstream cellular sequences. The 5' terminus of this clone, termed AF-5, occurs one bp downstream of the predicted transcriptional start site in the RTVL-H long terminal repeat (LTR). AF-5 contains an open reading frame of 689 amino acids beginning within RTVL-H sequences that has two domains of homology with phospholipase A2 (PLA2). These domains, of approximately 120 amino acids each, are 30-38% identical to secreted PLA2s and contain sequence features of both group I and II enzymes. The corresponding AF-5 transcript is 2.5 kb and is derived from a single copy novel gene termed PLA2L. Southern analysis indicates that the RTVL-H element is normally present in human DNA upstream of the PLA2L gene. RTVL-H/PLA2L chimeric transcripts were detected in two independent teratocarcinoma cell lines but not in several other cell lines or primary human tissues. Characterization of additional cDNA clones and PCR analysis indicates that multiple RTVL-H/PLA2L alternatively spliced transcripts are expressed. No evidence has been found for transcription from a non-LTR promoter. These findings strongly suggest that the endogenous LTR promotes expression of the human PLA2L gene in teratocarcinoma cells.

Alternative Splicing↗

Recent evolutionary expansion of a subfamily of RTVL-H human endogenous retrovirus-like elements.

The RTVL-H family is a medium repetitive family endogenous retrovirus-like sequences found in the genomes of humans and other primates. Different subfamilies of RTVL-H elements can be identified based on sequence differences clustered within the U3 region of their long terminal repeats (LTRs). These subfamilies have been designated Type I, Type Ia, and Type II. Examination of the U3 repeat structure of the LTR suggests that the Type Ia LTR is a recombinant between Types I and II. Northern analysis of cell lines indicates that expression of RTVL-H elements with Type Ia LTRs is less restricted than the other two LTR types. We have examined the evolutionary history of these subfamilies within the primate lineage through Southern blot analyses and library screening procedures to determine copy numbers and through polymerase chain reaction (PCR) analyses to determine integration times of individual elements at orthologous loci in different primate species. Our findings suggest that the Type I and Type II subfamilies arose early in primate evolution and had undergone their most significant expansions before the divergence of apes and Old World monkeys 30 MYr ago. In contrast, the Type Ia subfamily has expanded more recently, being found in significant numbers only in hominoids.

Animals↗

Evidence for a functional subclass of the RTVL-H family of human endogenous retrovirus-like sequences.

We report the discovery of a subgroup of RTVL-H human endogenous retroviral elements, designated RTVL-Hp, that is intact in the pol region which is deleted in the vast majority of RTVL-H elements. As a consequence, RTVL-Hp elements contain critical functional domains in their pol region that other RTVL-H elements lack. We estimate that the haploid genomes of humans, apes, and Old World monkeys contain 50 to 100 copies of RTVL-Hp elements and 800 to 1,000 deleted sequences. The major amplification of deleted elements appears to have occurred after the divergence of Old World and New World monkeys, since we have obtained evidence that a few intact RTVL-Hp elements, but no deleted forms, are present in marmoset DNA. Using the polymerase chain reaction coupled with a direct screen for open reading frames, we have isolated fragments from four RTVL-Hp elements amplified from human DNA that contain an open reading frame throughout a region of pol that is disrupted by diagnostic mutations in all other RTVL-H sequences that we had previously analyzed. Northern (RNA) hybridization analysis shows that unit-length RTVL-Hp transcripts are expressed in the human teratocarcinoma cell line Tera-1. Together, the results presented here suggest that a small functional subfamily of RTVL-H elements is present in the human genome.

Amino Acid Sequence↗

A human endogenous long terminal repeat provides a polyadenylation signal to a novel, alternatively spliced transcript in normal placenta.

We have been investigating the impact that the long terminal repeats (LTRs) of the RTVL-H family of human endogenous retroviral-like elements may have on the expression of adjacent cellular genes. Using a differential hybridization strategy, we have screened a cDNA library from a normal full-term human placenta and have identified two clones containing non-RTVL-H-related cellular sequences that have been polyadenylated within an RTVL-H LTR. One of these clones, cPj-LTR, contains an open reading frame (ORF) of 223 amino acids. Southern analysis indicated that the corresponding gene, termed PLT, is most probably a single multi-exon locus and that related sequences are present in the mouse genome, suggesting that this gene has been evolutionarily conserved. Database searches detected no significant homology to previously published sequences, indicating that PLT is a novel gene. Northern analysis identified several PLT-related transcripts in placental RNA samples, one of which is associated with the LTR. The presence of this PLT-LTR fusion transcript in normal placenta was also confirmed by PCR. Additional hybridization studies with RNAs from various cell lines suggested that the PLT locus is differentially expressed in different cell types. To investigate the structure of the non-LTR-associated PLT-related transcripts, additional clones were isolated from the placental cDNA library. Analysis of these clones suggests that the PLT mRNA undergoes alternative splicing at its 3' end, with polyadenylation within an RTVL-H LTR occurring in one of the resulting transcripts.

Alternative Splicing↗

SV40 large T antigen trans-activates the long terminal repeats of a large family of human endogenous retrovirus-like sequences.

The Simian Virus 40 (SV40) large T antigen (T) is required for the initiation of viral replication, the autoregulation of early gene expression, and the activation of late gene expression in productively infected cells. In addition to these roles, T has been implicated in the transcriptional activation of a variety of viral and cellular promoters. We have used the chloramphenicol acetyltransferase (CAT) reporter gene system to study the effect of T on the long terminal repeats (LTRs) of a large family of human endogenous retrovirus-like sequences, RTVL-H. Here we show that T can activate expression from certain RTVL-H LTRs 5- to 30-fold. Competition experiments in which an excess of plasmid containing only an RTVL-H LTR was cotransfected with an LTR-CAT reporter gene construct confirmed that this effect is specific for RTVL-H sequences. Restriction enzyme analysis using methylation-sensitive enzymes has shown that this activation is not due to plasmid replication. We have also observed this trans-activation effect in two CV-1 cells lines containing stably integrated LTR-CAT constructs. These results demonstrate that a known transforming protein can alter the transcriptional capabilities of RTVL-H LTRs. As there are approximately 3000 related LTRs in the genomes of humans and other primates, these findings suggest that a large number of these promoters and their associated transcripts may be transcriptionally stimulated by this and other oncogens.

Animals↗

Strategy for detecting cellular transcripts promoted by human endogenous long terminal repeats: identification of a novel gene (CDC4L) with homology to yeast CDC4.

Several families of repetitive sequences related to integrated retroviruses have been identified in the human genome. The largest of these families, the RTVL-H family, has close to 1000 members in addition to a similar number of solitary long terminal repeats (LTRs) dispersed on all chromosomes. Previous work has shown that the expression of genomic RTVL-H elements is driven by their LTRs and that some LTRs can promote expression of a reporter gene. These observations suggest that some endogenous RTVL-HLTRs may naturally regulate the transcription of adjacent cellular genes or that rearrangements involving these elements may cause aberrant gene expression. To investigate this possibility, we have used a differential screening strategy to identify chimeric cDNA clones derived from LTR-promoted transcripts. Here we report the identification and analysis of four such clones isolated from an NTera2D1 (teratocarcinoma) cDNA library. Two of the clones, AF-1 and AF-2, contain termination codons in all reading frames. Another clone, AF-4, contains LTR sequences linked in the genome to a CpG island. The fourth clone, AF-3, contains an 862-bp open reading frame representing part of a novel gene (CDC4L) with homology to the yeast cell division cycle gene CDC4. These findings indicate that RTVL-H elements may be involved in the regulation of diverse cellular transcripts in human cells.

Amino Acid Sequence↗

Molecular analysis of deletions in the human beta-globin gene cluster: deletion junctions and locations of breakpoints.

DNA fragments that contain the deletion junction regions of four independent deletions involving the human beta-globin gene cluster have been isolated and cloned. The fragments were isolated from individuals with the conditions referred to as Sicilian (delta beta)zero-thalassemia, Turkish G gamma+(A gamma delta beta)zero-thalassemia, Black G gamma+(A gamma delta beta)zero-thalassemia, and HPFH-2. The sequences of the deletion junctions and of the normal DNA surrounding their 3' breakpoints were determined and compared to the previously determined sequences of normal DNA surrounding their 5' breakpoints. These comparisons show that the deletions were the result of nonhomologous recombinational events. Two of the deletion junctions contain "orphan" nucleotides, while the other two show very limited amounts of "junctional homology." Both types of junctions are common among recombination events in mammalian cells and we discuss a simple joining scheme that could account for the junctions reported here. Unlike other deletions in this cluster and in other gene clusters, none of the eight deletion breakpoints examined here occurred within Alu family repeats. To examine the significance of deletion breakpoints within various sequence categories, we analyzed the data from a well-defined set of deletions within this locus. In contrast to deletions in the alpha-globin gene cluster, the occurrence of breakpoints in Alu family repetitive sequences is not statistically significant within the beta-globin gene cluster. However, breakpoints do occur within transcriptional units of the beta-globin gene cluster more frequently than expected by chance alone. We conclude from our analysis that the mechanisms of DNA joining are not locus or location specific, but at least a portion of the mechanisms of chromosomal breakages do show locus specificity.

Base Sequence↗

Autonomous expression of RTVL-H endogenous retroviruslike elements in human cells.

Northern (RNA) blot analysis of RNA from various human cell lines and tissues has demonstrated that elements belonging to the RTVL-H family of human endogenous retroviruslike sequences are expressed in several cell types. The highest levels of RTVL-H-related RNAs were observed in teratocarcinoma cell line NTera2D1, HeLa cells, two bladder carcinoma cell lines, and normal amniotic tissue. Expression was also observed in normal chorion and in some other cell lines. The RTVL-H transcription pattern varied among the different cell types, but several expressed a unit-length 5.6-kilobase transcript. Characterization of cDNA clones corresponding to transcripts present in NTera2D1 cells indicates that the complex transcription pattern observed in these cells is generated by the following: (i) transcription of both full-length and deleted genomic elements, which is initiated within the 5' long terminal repeat (LTR) and, in all but one case, polyadenylated in the 3' LTR; (ii) the splicing of both unit-length transcripts and transcripts from a deleted element; (iii) transcription involving solo LTR sequences; and (iv) transcription which, in one case, reads through the 3' LTR into flanking cellular sequences. Sequence data obtained from 25 cDNA clones revealed that at least 13 RTVL-H elements are expressed in NTera2D1 cells. The positions of several termination codons within the pol region are the same among nine different elements, indicating that an ancestral RTVL-H element bearing these mutations dispersed within the genome. We also found that RTVL-H expression varied among samples of amnion and chorion tissue isolated from different individuals. These findings demonstrate that regulated autonomous expression of RTVL-H sequences occurs in human cells.

Amino Acid Sequence↗

Polyadenylation function and sequence variability of the long terminal repeats of the human endogenous retrovirus-like family RTVL-H.

The RTVL-H family of human endogenous retrovirus-like sequences consists of approximately 1000 "full-length" elements and at least as many solitary RTVL-H related long terminal repeats (LTRs). We have characterized cDNA clones from two human cell libraries (Hep-2 and normal peripheral blood) and have found three clones in which the AATAAA signal within the RTVL-H LTR has functioned to polyadenylate the transcript. In two of these cases the LTR has provided the polyadenylation signal for non-RTVL-H initiated transcriptional units. The DNA sequences of the LTR regions from these three cDNA clones are significantly different from a consensus LTR sequence generated from 10 genomic LTRs. In fact, two of these cDNA-derived LTRs, although closely related to each other, have a subregion within them which is not found in the genomic LTRs that have been analyzed. LTRs containing this subregion, termed type II LTRs, comprise approximately 25% of the total genomic LTR population. In stable DNA transfection experiments, both a type I and a type II LTR were able to donate a functional polyadenylation signal to a neomycin resistance gene. In LTR-positive placental cDNA clones, type II LTRs were found more frequently than expected from their genomic abundance. These findings suggest that RTVL-H LTRs may provide 3' processing signals for a variety of human RNAs. They also indicate that at least one distinct subpopulation of RTVL-H LTRs can be distinguished and suggest that this or other subpopulations may have different functional capacities in different human cells.

Base Sequence↗

Homologous recombination between the LTRs of a human retrovirus-like element causes a 5-kb deletion in two siblings.

The RTVL-H family of human endogenous retrovirus-like elements consists of approximately 1,000 intact members and of a similar number of solitary long terminal repeats (LTRs). In this study, the genetic heterogeneity of these elements has been investigated using unique flanking probes isolated from cDNA clones containing RTVL-H sequences. Four such probes were used to screen a panel of human DNA samples for genetic differences. One of these probes detected a 5.0-kb deletion in two related individuals. Cloning and DNA hybridization analysis indicated that the nondeleted common allele contained an intact RTVL-H element, whereas the deleted variant allele contained only a single LTR. DNA sequence comparisons strongly suggest that the deletion is due to homologous recombination between the 5' and 3' LTRs of the RTVL-H sequence. This is the first reported case of a DNA variation in humans that is due to an LTR-LTR excision event.

Alleles↗

Chromosomal distribution of the RTVL-H family of human endogenous retrovirus-like sequences.

We have analyzed the chromosomal distribution of a large family of human endogenous retrovirus-like sequences termed RTVL-H. In situ hybridizations suggest that these sequences are found on all human chromosomes. These results also indicate that clusters or concentrations of RTVL-H elements may exist on chromosomes 1p and 7q. Southern blotting experiments using somatic cell hybrids containing either the human chromosome 3 or the X chromosome confirm the presence of multiple dispersed RTVL-H sequences on these two chromosomes. These experiments also demonstrate that distinct RTVL-H banding patterns can be detected for each chromosome. Thus, RTVL-H probes may be useful in genome mapping studies.

Animals↗

Human endogenous retroviruslike genome with type C pol sequences and gag sequences related to human T-cell lymphotropic viruses.

We have cloned several prototypic members of the family of human endogenous retroviruslike elements having a histidine tRNA primer-binding site (RTVL-H) and have determined the nucleotide sequence of one of these clones (RTVL-H2). The RTVL-H2 sequence is 5,813 nucleotides long, with long terminal repeats of 450 nucleotides. Although this particular sequence contains no long open reading frames, computer searches have revealed several segments of amino acid homology with known retroviral gene products. In the gag region of RTVL-H2, there is a segment with significant homology to a region of the gag protein p30 of type C baboon endogenous virus. In the pol region of RTVL-H2, three segments similar to the Moloney leukemia virus (MLV) pol polyprotein were detected. These correspond to parts of the protease, reverse transcriptase, and endonuclease domains of the MLV pol gene. Interestingly, the last two pol domains are equidistant in RTVL-H2 and the type C murine retroviruslike DNA sequence (MuRRS), both having deletions of equal sizes relative to the MLV pol gene. One other segment similar to a retroviral gene product was identified in the RTVL-H2 gag region. This segment has 55 to 60% amino acid homology to a 50-amino-acid region of the gag nucleic acid-binding proteins encoded by human T-cell lymphotropic viruses types I and II and bovine leukemia virus. Thus, the RTVL-H2 genome harbors sequences related to evolutionarily distant retroviruses.

Amino Acid Sequence↗

A gene deletion ending within a complex array of repeated sequences 3' to the human beta-globin gene cluster.

A DNA fragment containing the deletion junction region from an Indian individual with a type of hereditary persistence of fetal hemoglobin has been cloned. Using a probe isolated from this deletion-spanning clone, we located the 3' breakpoint of the deletion in normal DNA to a region 30 kilobase pairs (kb) downstream of the beta-globin gene. The deletion removes 48.5 kb of DNA. Sequences of the deletion junction and of the normal DNA surrounding the 3' breakpoint were determined and compared to the previously determined sequence of the normal DNA surrounding the 5' breakpoint. This comparison shows that the deletion was the result of a nonhomologous recombinational event, although there is a 5-base-pair (bp) region of local homology between the normal DNAs at their breakpoints. The 5' deletion breakpoint occurs in the Alu family repeat 3' to the A gamma-globin gene. The 3' breakpoint is located within a region that contains the following: a portion of an L1 (Kpn I) repeat, a perfect 160-bp palindrome, and a set of 41-bp direct repeats that are found elsewhere in the human genome. A variation in restriction fragment lengths was observed in this region in one family.

Chromosome Deletion↗

A Chinese G gamma + (A gamma delta beta)zero thalassemia deletion: comparison to other deletions in the human beta-globin gene cluster and sequence analysis of the breakpoints.

A clone was isolated that contains the deletion junction region from an individual with a deletion associated with Chinese G gamma + (A gamma delta beta)zero thalassemia. A clone containing the normal DNA corresponding to the 3' breakpoint of this deletion was also isolated. Portions of these two clones were sequenced and compared to the region in the A gamma-globin gene where the 5' breakpoint occurs. This comparison reveals that the breakage and reunion event was nonhomologous and that it probably involved the insertion of 36-41 bases of DNA belonging to the L1 (KpnI) family of repetitive DNA. Genomic mapping revealed that the DNA on the 3' side of this deletion is closely linked in normal DNA to the 3' breakpoints of two different large deletions that are associated with hereditary persistence of fetal hemoglobin (HPFH). We cloned and mapped 35 kbp of normal DNA from this region (greater than 45 kbp downstream of the human beta-globin gene) that contains the 3' breakpoints of the Chinese thalassemia and the two HPFH deletions. An endogenous retrovirus-like element and several other repetitive sequences are located within this region. We show that the Chinese thalassemia deletion is greater than 80 kbp in length and differs in size from the two HPFH deletions by less than 6%. We also show that the Chinese thalassemia deletion is at least 40 kbp larger than several other deletions associated with a very similar phenotype.

Base Sequence↗

Induction of clonogenic and erythroleukemic cells by different helper virus pseudotypes of Friend spleen focus-forming virus.

The properties of clonogenic and leukemic cells, derived from mice infected with different helper virus pseudotypes of the polycythemic strain of Friend spleen focus-forming virus (SFFVp), have been analyzed. Four different replication-competent murine leukemia viruses (MuLVs) were used as helpers for the defective SFFVp genome: the Friend MuLVs, Moloney MuLV, and an amphotropic MuLV. Three different biological parameters were measured: (i) the kinetics of emergence of clonogenic cells characteristic of the late stages of Friend erythroleukemia; (ii) the ability of cells in these colonies to give rise to secondary colonies (self-renewal capacity); and (iii) the capacity of cell lines derived from these colonies to respond to inducers of erythroid differentiation. The properties of these cells was found to be independent of the helper virus used, suggesting that it is the SFFVp genome, not the helper virus, that plays a determinant role in the late stages of erythroleukemia.

Animals↗

A retrovirus-like element occurs between the 3' breakpoints of two large deletions in the human beta-globin gene cluster.

We have identified a novel repetitive family in human DNA. One member of this family is found downstream of the beta-globin gene cluster between the 3' breakpoints of the deletions associated with Chinese G gamma + (A gamma delta beta)O thalassemia and HPFH-2. This repetitive element is approximately 6 kbp in length and includes terminal direct repeats of 415 bp. Numerous DNA sequence features of the direct repeats (LTRs) and their flanking regions indicate that the element is a retrovirus-like structure. The most striking of these features is the presence of a histidine tRNA binding site just 3' to the 5' LTR. Accordingly the element is named RTVL-H (retrovirus-like element-histidine). The LTRs of the RTVL-H element are not strongly homologous to the LTRs of any previously described mammalian retrovirus or retrovirus-like element. Copy number estimates suggest that there are approximately 1000 RTVL-H elements in the human genome. The element found 3' (greater than 60 kbp) to the beta-globin gene appears to be a stable part of the normal genome. This retrovirus-like element is brought close to the fetal gamma-globin locus by the Chinese thalassemia deletion but is deleted in HPFH-1 and HPFH-2.

Binding Sites↗

Identification of a retrovirus-like repetitive element in human DNA.

We describe a 5- to 6-kilobase-pair repetitive family in human DNA. One member of this family is linked to the beta-globin gene cluster and is close to the 3' breakpoints of three different naturally occurring deletions involving this gene cluster. Sequence analysis indicates that this element includes terminal direct repeats of 415 base pairs that exhibit the features of long terminal repeats (LTRs) of retroviruses. A potential histidine tRNA primer binding site occurs just 3' to the 5' direct repeat. This retrovirus-like element interrupts a member of the Kpn I family of repeated DNA and is bracketed by a 5-base-pair directly repeated sequence. When attempts are made to clone the element in bacteriophage, homologous recombination between the LTR-like sequences is very frequently observed. Copy number estimates by two methods indicate that the element is repeated 800-1000 times in the human genome. We term this Homo sapiens family of retrovirus-like elements having a histidine tRNA primer binding site the hsRTVL-H family.

Base Sequence↗