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W G Kerr

Publications and source records attributed to W G Kerr.

At least 19 recordsLinked to original sources

Role of c-mpl in early hematopoiesis.

Recently, several lines of evidence have indicated an expanded role for thrombopoietin (TPO) and its receptor, c-mpl, in hematopoiesis. In addition to being the primary physiological regulator of platelet production, it is now apparent that TPO also acts during early hematopoiesis. To futher define the role of TPO in early hematopoiesis we have identified discrete murine and human stem cell populations with respect to c-mpl expression and evaluated their potential for hematopoietic engraftment. Fluorescence-activated cell sorter analysis of enriched stem cell populations showed the presence of c-mpl expressing subpopulations. Approximately 50% of the murine fetal liver stem cell-enriched population, AA4(+)Sca+c-kit+, expressed c-mpl. Analysis of the murine marrow stem cell population LinloSca+c-kit+ showed that 70% of this population expressed c-mpl. Expression of c-mpl was also detected within the human bone marrow CD34(+)CD38(-) stem cell progenitor pool and approximately 70% of that population expressed c-mpl. To rigorously evaluate the role of TPO/c-mpl in early hematopoiesis we compared the repopulation capacity of murine stem cell populations with respect to c-mpl expression in a competitive repopulation assay. When comparing the fetal liver progenitor populations, AA4(+)Sca+c-kit+c-mpl+ and AA4(+)Sca+c-kit+c-mpl-, we found that stem cell activity segregates with c-mpl expression. This result is complemented by the observation that the LinloSca+ population of c-mpl gene-deficient mice was sevenfold less potent than LinloSca+ cells from wild-type mice in repopulating activity. The engraftment potential of the human CD34(+)CD38(-)c-mpl+ population was evaluated in a severe combined immunodeficient-human bone model. In comparison to the CD34(+) CD38(-)c-mpl- population, the CD34(+)CD38(-)c-mpl+ cells showed significantly better engraftment. These results demonstrate a physiological role for TPO and its receptor, c-mpl, in regulating early hematopoiesis.

Animals

Follicular dendritic cell (FDC) precursors in primary lymphoid tissues.

The origin of follicular dendritic cells (FDC) is unresolved, and as such, remains controversial. Based on the migration of Ag-transporting cells (ATC) into lymphoid follicles and the phenotypic similarity between FDC and ATC, one hypothesis is that ATC may represent emigrating FDC precursors. This contrasts with the view that FDC originate from local stromal cells in the secondary lymphoid tissues. Mice homozygous for the severe combined immunodeficiency (prkdc(scid)) mutation (scid) lack FDC. Thus, they provide a powerful tool for assessing de novo generation of FDC. To test whether FDC precursors could be found in bone marrow or fetal liver, scid/scid mice were reconstituted with either: 1) bone marrow cells from (BALB/c x C57BL/6)F1 donors, 2) bone marrow cells from ROSA BL/6 F1 (lacZ-transfected) mice, 3) rat bone marrow cells, or 4) rat fetal liver cells. Six to eight weeks after reconstitution with F1 bone marrow, cells reactive with the FDC-labeling mAb, FDC-M1, also expressed donor class I molecules on their surfaces. Similarly in mice reconstituted with lacZ-transfected bone marrow cells, these cells were also positive for the lacZ gene product. Furthermore, in spleens of animals reconstituted with either rat bone marrow or rat fetal liver, rat FDC were identified using the specifically labeling mAb, ED5. In all cases, host FDC were also present, indicating that scid/scid mice have FDC precursors that will mature in the presence of allogeneic or xenogeneic lymphoid cells. In summary, FDC can be derived from progenitor cells present in primary lymphoid tissues.

Animals

Genetic modification of the hematolymphoid compartment for therapeutic purposes.

Gene transfer into cells of the hematolymphoid compartment has enormous potential to provide effective therapies across a wide spectrum of human disease. This article reviews current and potential uses of gene modification in this compartment. Issues relevant to the eventual success of gene therapy in the hematolymphoid compartment are also discussed, including biological features of target cells, ex vivo versus in vivo gene therapy approaches, and currently available vector technologies.

Acquired Immunodeficiency Syndrome

Detection and isolation of gene-corrected cells in Gaucher disease via a fluorescence-activated cell sorter assay for lysosomal glucocerebrosidase activity.

Gaucher disease type 1 results from the accumulation of glucocerebroside in macrophages of the reticuloendothelial system, as a consequence of a deficiency in glucocerebrosidase (GC) activity. Recent improvements in the methodologies for introducing foreign genes into bone marrow stem cells have prompted several groups to test the efficacy of gene transfer therapy as a curative treatment for Gaucher disease. Limitations of this approach include the potential for insufficient engraftment of gene-corrected cells and incomplete transduction of hematopoietic stem cells using retroviral gene transfer. Overcoming these obstacles may be critical in the case of treatment for Gaucher disease type 1, because GC transduced cells have not been shown to have a growth advantage over noncorrected cells. Here, we describe the development and application of a novel, fluorescence-activated cell sorter based assay that directly quantitates GC activity at the single cell level. In a test of this application, fibroblasts from a Gaucher patient were transduced, and high expressing cells sorted based on GC activity. Reanalysis of cultured sorted fibroblasts reveals that these cells maintain high levels of enzymatic activity, compared with the heterogeneous population from which they were sorted. The assay is sufficiently sensitive to distinguish GC activity found in Gaucher patient monocytes from that in normal controls. Furthermore, preliminary results indicate that increased GC activity can be detected in transduced, CD34+ enriched peripheral blood mononuclear cells isolated from a Gaucher patient. This method should be a useful addition to current gene therapy protocols as a means to quantitatively assess gene correction of relevant cell populations and potentially purify transduced cells for transplantation.

Cell Separation

Disruption of overlapping transcripts in the ROSA beta geo 26 gene trap strain leads to widespread expression of beta-galactosidase in mouse embryos and hematopoietic cells.

The ROSA beta geo26 (ROSA26) mouse strain was produced by random retroviral gene trapping in embryonic stem cells. Staining of ROSA26 tissues and fluorescence-activated cell sorter-Gal analysis of hematopoietic cells demonstrates ubiquitous expression of the proviral beta geo reporter gene, and bone marrow transfer experiments illustrate the general utility of this strain for chimera and transplantation studies. The gene trap vector has integrated into a region that produces three transcripts. Two transcripts, lost in ROSA26 homozygous animals, originate from a common promoter and share identical 5' ends, but neither contains a significant ORF. The third transcript, originating from the reverse strand, shares antisense sequences with one of the noncoding transcripts. This third transcript potentially encodes a novel protein of at least 505 amino acids that is conserved in humans and in Caenorhabditis elegans.

Animals

Analysis of lipopolysaccharide-response genes in B-lineage cells demonstrates that they can have differentiation stage-restricted expression and contain SH2 domains.

Bacterial lipopolysaccharide (LPS) is a potent stimulator of B-cell activation, proliferation, and differentiation. We examined the genetic response of B-lineage cells to LPS via trapping of expressed genes with a gene-trap retrovirus. This analysis showed that expression of only a small fraction of genes is altered during LPS stimulation of B-lineage cells. Isolation of the cellular portion of the trapped LPS-response genes via 5' RACE (rapid amplification of cDNA ends) cloning identified novel genes for all the cloned loci. These novel LPS-response genes were also found to have differentiation stage-restricted expression within the B-lymphoid lineage. That LPS-response genes in B cells also have differentiation stage-restricted expression suggests that these genes may be involved in the control of B-cell function and differentiation, since the known members of this class of genes have frequently been found to play a role in the function and differentiation of B-lineage cells. The isolation of novel members of this class of genes, including a gene that contains a putative SH2 domain, will further increase our understanding of the molecular events involved in the control of B-cell differentiation and function.

Amino Acid Sequence

A rapid and quantitative assay to estimate gene transfer into retrovirally transduced hematopoietic stem/progenitor cells using a 96-well format PCR and fluorescent detection system universal for MMLV-based proviruses.

The polymerase chain reaction (PCR) is an extremely sensitive assay that has many uses in retroviral-mediated gene transfer protocols. Because the majority of retroviral vectors used in current gene transfer protocols are based on the Moloney-murine leukemia virus (MMLV), we have designed primers which amplify a region of the psi packaging sequence from all MMLV retroviruses tested. This assay detects gene transfer by all MMLV-based vectors and is especially useful for the laboratory that routinely screens a number of different retroviruses for their gene transfer efficiency. Furthermore, we present here a novel technique for harvesting single colonies derived from hematopoietic stem/progenitor cells growing in methylcellulose medium that expedites and substantially improves the resulting quantitative estimates of retroviral transduction frequencies. This technique utilizes a conventional 96-well format and, when coupled with a fluorescence-based post-PCR detection system, makes it unnecessary to run agarose gels to visualize the PCR product. This system of PCR product detection, which uses the 5'-->3' exonuclease activity of Taq DNA polymerase to cleave a fluorescently labeled probe during each round of PCR amplification, is fast, convenient, and at least as sensitive as an ethidium bromide-based detection system when used in conjunction with our universal PCR assay.

Acute Disease

Gene therapy: current status and future prospects.

The ability to successfully introduce foreign genes into eukaryotic cells has made possible a new approach to the treatment of human disease. Gene therapy is now being brought to bear on genetic, malignant, and infectious diseases. In this review, we summarize the status of the field through an analysis of clinical protocols involving transfer of marker or therapeutic gene(s) into various somatic cell targets. Many of these trials will begin to examine whether or not patients with diseases that are unresponsive to conventional therapeutic interventions (e.g., pharmaceutical, surgical) will show benefit solely from somatic cell-based gene therapies. In other trials, the gene therapies are meant to complement or bolster the effect of conventional treatments. Although the field of gene therapy is now entering the clinical arena, we will also attempt to summarize certain shortcomings and technical hurdles that will need to be overcome for its eventual widespread use.

Forecasting

Regulation of IgM and IgD expression in human B-lineage cells.

IgD is thought to function primarily as an Ag receptor that is expressed, together with IgM, only on mature B lymphocytes. This differentiation stage-specific expression of IgD has been well characterized in mice, where delta mRNA is detected only in mature IgM/IgD B cells. Humans, in contrast to mice, have significant levels of serum IgD, suggesting that the regulation of this isotype might differ between the two species. Therefore, we examined the regulation of both IgM and IgD expression in cell lines encompassing the spectrum of human B lineage development. Surprisingly, two species of delta mRNA could be found at all differentiation stages -from mu+ pre-B cell to IgM-secreting plasmablast. These mRNA are translated to yield the membrane and secretory forms of delta. The membrane delta-chain: secretory delta-chain ratio did not necessarily reflect the membrane mu-chain:secretory mu-chain ratio in the same cell line, implying that different mechanisms are involved in the selection of membrane vs secretory mu- and delta-chains. The delta-chains synthesized in pre-B cells were degraded, but in more mature cell types IgD could be stably expressed and secreted. Exceptions to this panlineage synthesis of delta-chains were, however, observed in two of the B cell lymphomas, where delta expression was prevented by transcriptional and posttranscriptional mechanisms. The presence of delta-chain in pre-B cells and the secretion of IgD by more mature cells suggest that IgD may have immunoregulatory roles throughout B cell differentiation. These studies also indicated that the bias toward secretory mu-chain production that occurs in human IgM secreting cells results from posttranscriptional regulation. In addition, we have identified a B cell line that synthesizes both normal-sized mu-chains and those with smaller apparent m.w. translation products of truncated mu mRNA.

B-Lymphocytes

In situ detection of stage-specific genes and enhancers in B cell differentiation via gene-search retroviruses.

We demonstrate that infection of an LPS-responsive pre-B cell line with transcriptionally-defective retroviruses containing a reporter gene (lacZ) can result in viral integrations where expression of lacZ is differentiation stage-dependent. Because expression of lacZ is dependent upon flanking cellular sequences these retroviral integrations represent in situ gene fusions with cellular enhancers (Enhsr1) and genes (Gensr1) which are either induced or repressed during LPS-stimulated differentiation. One of the well-documented effects of LPS upon pre-B cells is the induction of kappa light chain transcription via NF-kappa B. The identification of LPS-stimulated gene repression during B cell differentiation indicates that LPS has multiple effects upon gene expression during the pre-B to B cell transition. The identification of cellular enhancers and genes which are downregulated during the transition from the pre-B to the B cell stage indicates that other transcription factors, in addition to NF-kappa B, are required for this step in differentiation. Finally, we present some initial experiments which indicate the gene-search retroviruses can introduce expression of lacZ into normal hematopoietic cells in vitro and in vivo.

Animals

Stage-specific transcription of germline IgH C gamma and C alpha regions during human B cell differentiation.

Previous studies have suggested that transcription of germline heavy chain constant region (CH) genes in murine B cells may determine the potential of their different CH regions to undergo isotype switch recombination. We have examined the transcriptional activity across the immunoglobulin heavy chain (IgH) locus in human B lineage cells. Transcription of germline C gamma and C alpha was observed in every surface IgM+ or surface IgM+/IgD+ B cell stage cell line and malignancy. In contrast, such transcription could not be detected in pre-B cells and only low levels of C alpha but not C gamma transcription were evident in IgM-secreting plasmablast cells. Transcriptional activity of germline IgH C epsilon was singularly absent at all stages of B cell development. Our results suggest that germline transcription of the C gamma and C alpha regions may be a constitutive feature of the human B cell differentiation program. Because this transcriptional activity is limited primarily to the B cell stage and occurs prior to the actual isotype switch, the induction of C gamma and C alpha transcription may represent preparation of the downstream IgH chromatin for potential switch recombination.

B-Lymphocytes

Mu heavy chains can associate with a pseudo-light chain complex (psi L) in human pre-B cell lines.

In pre-B cells, the earliest identifiable stage of B cell differentiation, there is an asynchrony of immunoglobulin chain expression in that mu heavy chains are synthesized in the absence of light chain synthesis. These mu chains largely remain intracellular and are degraded. Here we demonstrate that a fraction of mu chains in human pre-B cell lines can reach the surface in association with three pre-B-specific proteins with relative molecular masses of 22, 18, and 16 kd, which we term collectively the pseudo-light chain complex, psi L. This association generates a multimeric complex, mu 2-psi L. Two of the psi L proteins (22 and 16 kd) are lambda-immunoreactive and form disulfide bonds with mu chains, suggesting that they are closely related to conventional lambda light chains. The 18 kd psi L species is a non-covalently-associated member of the complex. The expression of mu-psi L complexes on the surface of pre-B cells could have a functional role in the control of pre-B growth and differentiation by the hematopoietic microenvironment.

B-Lymphocytes

In situ detection of transcriptionally active chromatin and genetic regulatory elements in individual viable mammalian cells.

Using a newly developed FACS method for quantifying the expression of the Escherischia coli lacZ reporter gene in viable mammalian cells, we have obtained cloned cell lines in which the expression of lacZ is under the control of native endogenous transcription elements. We infected the murine pre-B cell 70Z/3 with transcriptionally disabled retroviruses containing lacZ and employed the FACS-FDG technique to detect and sort rare lacZ+ cells in which we expect integration is near such endogenous transcription elements. After two rounds of enrichment we obtained a population of cells that was 80-90% positive for lacZ activity. Clones derived from the lacZ+ pool differ from each other with respect to their overall level of lacZ activity as well as in the pattern of lacZ expression among cells within an individual clone. Treatment of these lacZ+ 70Z/3 clones with lipopolysaccharide (LPS; which is known to stimulate differentiation of 70Z/3 from a pre-B cell to an IgM-expressing B cell) greatly decreased lacZ expression in one clone, 7e17. lacZ expression in this clone was 50-100 times lower within 24 hr of LPS addition and coincided with the acquisition of IgM kappa on the surface of 7e17. This suggests that a transcriptionally active domain of chromatin that harbors the lacZ construct is down-regulated during the transition induced by LPS stimulation.

Animals