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R G Goodwin

Publications and source records attributed to R G Goodwin.

At least 55 records · Page 3Linked to original sources

Interleukin-7 retroviruses transform pre-B cells by an autocrine mechanism not evident in Abelson murine.

In this study, we have constructed retroviral vectors expressing the interleukin-7 (IL-7) cDNA and have used infection with these retroviruses to express this cytokine endogenously in an IL-7-dependent pre-B-cell line. Infection with IL-7 retroviruses, but not with a control retrovirus, resulted in the conversion of the cells to IL-7 independence. The frequency at which this occurred, together with data on vector expression levels, indicated that secondary events were required for factor independence in this system. Southern analysis showed that the IL-7-dependent clones harbored unrearranged copies of the vector proviruses. The factor-independent cells produced variable quantities of IL-7 as measured by an IL-7-specific bioassay, and their proliferation could be substantially inhibited by a neutralizing antibody directed against IL-7, indicating that a classical autocrine-mechanism was responsible for their transformation. These IL-7-independent cells were tumorigenic, in contrast to the parental IL-7-dependent cells or those infected with a control vector. These results showed that IL-7 could participate in the malignant transformation of pre-B cells. However, neither of two Abelson murine leukemia virus (A-MuLV)-transformed pre-B-cell lines expressed detectable IL-7 mRNA, at a level of sensitivity corresponding to less than one molecule of mRNA per cell. Moreover, the proliferation of the A-MuLV transformants was unaffected by addition of the IL-7 antisera under conditions in which parallel experiments with IL-7 virus-infected cells resulted in greater than 70% growth inhibition. Thus, transformation of pre-B cells by A-MuLV was not associated with a demonstrable autocrine loop of IL-7 synthesis. These results show that IL-7 can participate in the malignant transformation of pre-B cells and suggest studies aimed at assessing the role of autocrine production of IL-7 in the generation of human leukemias and lymphomas.

Animals↗

Molecular cloning and expression of the type 1 and type 2 murine receptors for tumor necrosis factor.

Clones encoding the type 1 (p80) and type 2 (p60) forms of the murine receptors for tumor necrosis factor (TNF) were isolated by cross-hybridization using probes derived from the cloned human TNF receptors. Each of the murine receptors shows strong sequence homology to the corresponding human receptor (approximately 65% amino acid identity) throughout the molecule but only modest homology, limited to ligand-binding domains, between themselves. The ligand-binding characteristics of the recombinant murine receptors mirror those of the human homologs: both receptor types bind TNF-alpha and -beta with multiple affinity classes, and the ligands cross-compete. Analysis of the murine transcripts encoding these receptors revealed the presence of RNAs for one or both forms of the receptors in all cells examined. It was also demonstrated that for both types of human TNF receptor, variably sized transcripts are observed in different cells. The murine cDNAs were further used to determine the chromosomal locations of the TNF receptor genes. They are not linked, in contrast to the ligands, and map to chromosomes 4 (type 1) and 6 (type 2).

Amino Acid Sequence↗

A receptor for tumor necrosis factor defines an unusual family of cellular and viral proteins.

Tumor necrosis factor alpha and beta (TNF-alpha and TNF-beta) bind surface receptors on a variety of cell types to mediate a wide range of immunological responses, inflammatory reactions, and anti-tumor effects. A cDNA clone encoding an integral membrane protein of 461 amino acids was isolated from a human lung fibroblast library by direct expression screening with radiolabeled TNF-alpha. The encoded receptor was also able to bind TNF-beta. The predicted cysteine-rich extracellular domain has extensive sequence similarity with five proteins, including nerve growth factor receptor and a transcriptionally active open reading frame from Shope fibroma virus, and thus defines a family of receptors.

Amino Acid Sequence↗

Characterization of the human and murine IL-7 genes.

IL-7 cDNA clones were used to isolate clones from the human IL-7 gene locus. Characterization of the clones revealed that the human IL-7 gene contains six exons, distributed over more than 33-kbp. An 18 amino acid insert found in human IL-7, for which no counterpart has yet been demonstrated in murine IL-7, is exactly encoded by exon 5 of the human gene. Clones were also isolated containing 5' flanking sequences and the first four exons of the murine IL-7 gene. RNase protection studies of murine IL-7 mRNA, as well as the sequences of 5'-terminal murine IL-7 cDNA clones obtained by anchored polymerase chain reaction cloning, indicate that the murine IL-7 gene initiates transcription at multiple sites within a 200-bp region. This region, and the sequence upstream of this region, appears to lack transcriptional regulatory sequences commonly found in eukaryotic promoters, including the TATA and CAAT sequences. However, the region lies within a CpG island, and contains potential recognition sequences for the "helix-loop-helix" class of DNA binding proteins.

Amino Acid Sequence↗

Cloning of the human and murine interleukin-7 receptors: demonstration of a soluble form and homology to a new receptor superfamily.

cDNA clones encoding the human and murine interleukin-7 (IL-7) receptor were isolated and expressed in COS-7 cells. Binding of radiolabeled IL-7 to the recombinant IL-7 receptors produced curvilinear Scatchard plots containing high and low affinity classes. These binding properties, as well as the molecular size of the cloned receptor, were comparable to the native forms of the IL-7 receptor. In addition, several cDNA clones were isolated that encode a secreted form of the human IL-7 receptor capable of binding IL-7 in solution. Analysis of the sequence of the IL-7 receptor revealed significant homology in the extracellular domain to several recently cloned cytokine receptors, demonstrating that the IL-7 receptor is a member of a new receptor superfamily.

Amino Acid Sequence↗

Lymphopoiesis and IL-7.

Interleukin 7 (IL-7) is a cytokine initially referred to as pre-B cell growth factor because of its growth-promoting activity for cells early in the B lymphocyte lineage. Subsequent to IL-7 gene cloning and expression, IL-7 was also found to influence the activity of cells in the T lineage. Some of the effects of IL-7 on B and T lymphocyte behavior, both in vitro and in vivo, are discussed here. The growth of pre-B cells in Whitlock-Witte long-term bone marrow cultures [1] provided the basis for the cloning of IL-7 [2]. Such cultures consist of at least two cellular elements: 1) a stromal cell layer and 2) lymphoid cells growing in clusters around the stromal cells. A cDNA encoding IL-7 was cloned utilizing a direct expression cloning strategy. A transformed stromal cell line was used as a source of RNA from which a cDNA library was constructed, inserted into a mammalian expression vector and expressed in COS 7 cells. The COS cells were then screened for secretion of IL-7 into the culture medium as defined by the ability to support stromal cell-independent growth of the lymphoid elements from long-term Whitlock-Witte cultures. In addition to its effects on cells from long-term marrow cultures, IL-7 stimulates growth of cells in cultures of fresh bone marrow [3]. Cells from whole bone marrow plated in semisolid agar form colonies in the presence of IL-7. If the marrow is first enriched for cells expressing the B220 antigen before culture in IL-7, the plating efficiency is increased dramatically.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

A new cytokine receptor superfamily.

The amino acid sequences of several, recently cloned cytokine receptors show significant homologies, primarily in their extracellular, ligand-binding domains. With one exception, their cognate cytokines mediate biological activities on a variety of hematopoietic cell types; thus we have designated the receptors as the hematopoietic receptor superfamily.

Amino Acid Sequence↗

Interleukin-7: a new hematopoietic growth factor.

IL-7 is a regulator of early lymphoid progenitors of both the T cell and B cell lineages. The high level of expression of IL-7 mRNA under steady state conditions in the thymus suggest that IL-7 is an important regulator of basal lymphoid development. Early pre-clinical data also suggests that IL-7 may have a role in platelet production.

Animals↗

Human IL-7: a novel T cell growth factor.

IL-7 is a hemopoietic growth factor that induces the proliferation of early B lineage cells. In the course of studies to determine its effect on human bone marrow cells, we noted a marked outgrowth of mature T cells. When T cells from the circulation were cultured with IL-7, a dose-dependent proliferative response was observed. The target cells included both the CD4+ and CD8+ subpopulations of T cells, but the memory T cells (CD45R-) were better responders than unprimed T cells (CD45R+). IL-7 induced the expression of receptors for IL-2 and transferrin and higher levels of the 4F2 activation Ag. Although T cell responses to suboptimal concentrations of IL-7 were enhanced by the addition of IL-2, the proliferative response to IL-7 was not inhibited by neutralizing antibody to the IL-2R (Tac), nor was IL-2 secretion detected in this response. This response pattern of mature T cells suggests an important role for IL-7 in normal T cell physiology in humans.

Adult↗

Recombinant interleukin 7, pre-B cell growth factor, has costimulatory activity on purified mature T cells.

The activation of highly purified murine peripheral T cells in vitro by Con A is dependent on a co-stimulatory signal that is not IL-1 or IL-2. Previous evidence has demonstrated that the recently defined lymphokine IL-6 could provide costimulatory activity for purified T cells cultured with Con A. In this report we demonstrate that IL-7 also has potent co-stimulatory activity for purified murine T cells, as well as its previously described ability to support the growth of pre-B cells in Witte-Whitlock cultures. When rIL-7 was added to cultures of purified T cells together with Con A, it induced the expression of IL-2 receptors, IL-2 production, and consequently proliferation. In addition, IL-7 exhibited the same magnitude of activity in this assay as IL-6. Also, anti-IL-6 antibody which inhibited the IL-6-induced response had no effect on the IL-7 response. Thus, IL-7 does not act by inducing IL-6. These results demonstrate that IL-7, a potent growth stimulus for pre-B cells, also has a role in T cell activation.

Animals↗

Human interleukin 7: molecular cloning and growth factor activity on human and murine B-lineage cells.

A cDNA encoding biologically active human interleukin 7 was isolated by hybridization with the homologous murine clone. Nucleotide sequence analysis indicated that this cDNA was capable of encoding a protein of 177 amino acids with a signal sequence of 25 amino acids and a calculated mass of 17.4 kDa for the mature protein. Recombinant human interleukin 7 stimulated the proliferation of murine pre-B cells and was active on cells harvested from human bone marrow that are enriched for B-lineage progenitor cells. Analysis of RNA by blot hybridization demonstrated the presence of two size classes of interleukin 7 mRNA in human splenic and thymic tissue.

Amino Acid Sequence↗

Cloning and characterization of a potentially protective antigen in lymphatic filariasis.

To facilitate biochemical studies of protective filarial antigens, a lambda gt11 cDNA library was constructed from Brugia malayi adult mRNA and screened with rabbit sera that recognizes a limited set of filarial antigens of approximately 25, 42, 60, and 112 kDa. Antigens of approximately equal to 25 and approximately equal to 60 kDa have been shown previously to induce enhanced clearance of microfilaremia in mice. A 154-base pair clone detected by immunological reactivity was used to isolate by hybridization a nearly full-length cDNA clone of 1.8 kilobases. Nucleotide-sequence analysis indicated that this clone was derived from a mRNA encoding a 63-kDa antigen. A fusion polypeptide containing 37 kDa of the Escherichia coli TrpE protein (anthranilate synthase) and 55 kDa of the cloned protein was recognized in immunoblot experiments with antisera raised against a partially purified preparation of the approximately equal to 60-kDa protective filarial antigen. These data relate the cloned antigen to a potentially protective antigen in lymphatic filariasis.

Amino Acid Sequence↗

c-erbB activation in avian leukosis virus-induced erythroblastosis: multiple epidermal growth factor receptor mRNAs are generated by alternative RNA processing.

Avian leukosis virus-induced erythroblastosis results from the specific interruption of the host oncogene, c-erbB, by the insertion of an intact provirus. This insertion results in the expression of two size classes (3.6 and 7.0 kilobases [kb]) of truncated c-erbB transcripts which are initiated in the 5' long terminal repeat of the integrated provirus. Through sequence analysis of erbB cDNA clones we have previously shown that the 3.6-kb activated erbB mRNA contains portions of viral gag and env genes fused to c-erbB sequences (T.W. Nilsen, P.A. Maroney, R.G. Goodwin, F.M. Rottman, L.B. Crittenden, M.A. Raines, and H.-J. Kung, Cell 41:719-726, 1985). In this report we show that the 7-kb mRNA differs from the shorter activated c-erbB mRNA in the length of its 3' untranslated sequence such that the longer mRNA has an extremely long (4.3 kb) 3' untranslated sequence. Additionally, we demonstrate that activated c-erbB mRNA precursors can be processed by alternative splicing to yield mRNAs with viral gag sequences fused directly to c-erbB sequences. Finally, blot hybridization evidence suggests that the two size classes of activated c-erbB mRNA in erythroblastic tissue represent truncated versions of the two c-erbB mRNAs present in normal tissue.

Animals↗

c-erbB activation in ALV-induced erythroblastosis: novel RNA processing and promoter insertion result in expression of an amino-truncated EGF receptor.

ALV-induced erythroblastosis results from the specific interruption of the host oncogene, c-erbB, by the insertion of an intact provirus. Integrated proviruses are oriented in the same transcriptional direction as c-erbB, and expression of truncated c-erbB transcripts is observed. Evidence, including sequence analysis of cDNA clones, indicates that transcription of truncated c-erbB mRNA is initiated in the 5' LTR of the integrated provirus. This transcript is processed through a series of remarkable splicing reactions to yield viral gag and env sequences fused to erbB sequences. These results establish a novel pathway of promoter insertion oncogenesis that stands in contrast to the pathways used in the activation of c-myc in B lymphomas.

Animals↗

Characterization of the bovine prolactin gene.

The gene coding for bovine prolactin was shown to exist as a single copy per haploid genome. Three restriction fragment polymorphisms were detected in the prolactin gene by Southern blot analysis of DNA obtained from the semen of pedigreed bulls representing eight breeds. The organization of the bovine prolactin gene was determined by restriction mapping of a clone isolated from a genomic library and by genomic blots. The 5'-flanking region and two exons were sequenced and the transcription start site mapped by primer extension. Comparison of the bovine prolactin sequence reported here with the published sequence of the rat prolactin gene revealed extensive homology (79%), extending 360 nucleotides upstream from the cap site, after which the sequences diverge. The homology exceeds that of the coding regions. A possible alternate intron-exon splice site was noted within the sequence coding for the signal peptide.

Amino Acid Sequence↗

Characterization and nucleotide sequence of the gene for the common alpha subunit of the bovine pituitary glycoprotein hormones.

The gene coding for the common alpha subunit of the bovine pituitary glycoprotein hormones was isolated from a bovine genomic library. The gene spans roughly 16.5 kbp, contains three intervening sequences, and codes for a message of approximately 730 nucleotides. The complete coding region of the gene was sequenced as well as 315 nucleotides of 5' flanking sequence and the entire intron C. Only a single base difference was found when the sequence of the gene was compared with that of the cDNA. Genomic blotting experiments suggest the presence of a single alpha subunit gene. Comparison of the bovine and human alpha subunit genes indicated that the high level of homology observed in the coding regions has been maintained throughout the 5' and 3' untranslated regions, and at least 90 nucleotides of the 5'flanking regions. Additionally, there is an 18 base pair sequence present in both the 5' flanking and 5' untranslated regions of the gene that is homologous to a region of the chick ovalbumin gene. This ovalbumin sequence has been suggested as a binding site for the progesterone receptor-complex.

Amino Acid Sequence↗