PubMed Health⌕ Search

Biomedical subjects

Y Chernajovsky

Publications and source records attributed to Y Chernajovsky.

At least 55 records · Page 3Linked to original sources

Human kinesin light (beta) chain gene: DNA sequence and functional characterization of its promoter and first exon.

Kinesins are tubulin molecular motors whose function is to transport organelles within cells. Very little is known about the regulation of expression of these proteins. We have characterized the gene product of one differentially spliced mRNA of the human light chain kinesin and cloned its promoter region. A full-length kinesin cDNA was translated in vitro in a cell-free system, producing a 70-kDa protein. Using this cDNA as a probe, we isolated and sequenced the promoter, first exon, and part of the first intron of this gene from a genomic lambda EMBL3 human placental DNA library. The whole gene spans more than 90 kb. The beta kinesin promoter region confers only constitutive transcription to the bacterial chloramphenicol acetyltransferase (CAT) reporter gene. In permanently transfected human HeLa and NB100 neuroblastoma cells, a reporter gene containing the promoter and part of the first exon of beta kinesin was 75-fold more active than the HSV-tk promoter. The first exon contains the 5'-untranslated sequence capable of forming a stable double-hairpin loop, which functions as a translational enhancer. Its deletion decreases the efficiency of in vitro translation of beta kinesin mRNA and confers increased translation to a CAT reporter gene.

Amino Acid Sequence↗

Selective gamma-chain T-cell receptor gene rearrangements in a patient with Omenn's syndrome: absence of V-II subgroup (V gamma 9) transcripts.

Only gamma-chain T-cell receptor transcripts utilizing V-1 subgroup gene segments were found in peripheral blood lymphocytes from a patient with Omenn's syndrome. gamma-Chain T-cell receptor transcripts utilizing the V gamma 9 (V-II subgroup) gene segment were absent in peripheral blood lymphocytes from this patient. V gamma 9 J gamma 1.2 C gamma 1 rearrangements are those primarily found in peripheral blood lymphocytes (70 to 85%) from normal donors.

Eosinophilia↗

Tumor cells engineered to express interleukin-6 exhibit a reduced tumorigenicity depending on the tumor cell model.

Cytokine gene transfer to tumor cells has been demonstrated to induce tumor rejection in different murine models. However, controversial results were presented for different cytokines. In order to study the antitumorigenic activity that has been proposed for IL-6, the poorly immunogenic melanoma B16 and the colon adenocarcinoma CT26-murine cell lines, were transduced with recombinant retrovirus expressing rat IL-6. In vivo studies showed that IL-6-producing-B 16 cells inoculated s.c. in syngeneic mice, exhibited reduced tumorigenicity compared to vector-transduced B 16 cells. The histology of growing IL-6-producing tumors showed a "pseudo-nodular" pattern which correlated with a strong inhibition of the in vitro invasive capacity of these cells. IL-6-producing-B 16 cells did not develop tumors in athymic nude mice suggesting that the antitumor effect is not mediated by a normal host-T- and B-cell response. In contrast, IL-6-producing CT26 cells grew as tumors in syngeneic mice with a faster growth rate than parental and vector-transduced cells, in accordance with an increased in vitro growth kinetics. These results indicate that IL-6 expression by tumor cells demonstrate different effects depending on the tumor cell model.

Adenocarcinoma↗

Interleukin-4 inhibits kappa light chain expression and NF kappa B activation but not I kappa B alpha degradation in 70Z/3 murine pre-B cells.

The murine pre-B cell line 70Z/3 responds to lipopolysaccharide by up-regulating the surface expression of kappa (kappa) light chain through activation of the transcription factor NF kappa B. Interleukin-4 (IL-4), a T cell cytokine, is a known inhibitor of some LPS-mediated events. We investigated whether IL-4 could inhibit the up-regulation of kappa light chain and activation of NF kappa B by LPS in 70Z/3. IL-4 partially inhibited both the LPS-induced expression of kappa light chain and also the activation of NF kappa B as judged by an NF kappa B reporter gene assay. Additionally, electrophoretic mobility shift assays confirmed this effect on LPS-induced NF kappa B DNA binding activity in the nucleus. Surprisingly, proteolytic degradation of I kappa B alpha (MAD3), a prerequisite for NF kappa B activation, was unaffected by IL-4, implying that this cytokine inhibits some subsequent undefined event in the activation of NF kappa B. IL-4 was also found partially to inhibit NF kappa B activity induced by tumor necrosis factor-alpha (TNF-alpha) and interleukin-1-beta (IL-1 beta). These results indicate that there may be a common mechanism for the well-documented anti-inflammatory effects of IL-4 and that this mechanism involves the transcription factor NF kappa B.

Animals↗

Gene therapy of rheumatoid arthritis via cytokine regulation: future perspectives.

Following many years of research using isolated human tissues and animal models, sufficient knowledge concerning rheumatoid arthritis has accumulated so that novel immunotherapies have been proposed. Biological agents are being tested in clinical trials and include antibodies to T cells and cytokines. Currently the most promising of these is intravenously administered neutralizing anti-TNF antibody. In order to establish disease modification, however, therapy needs to be delivered continuously over the long term. The prospect of delivering cytokine inhibitors as genetic material (naked DNA), viruses or in engineered autologous cells is considered as one option for achieving this goal. We compare two strategies, firstly, using immobile cells such as fibroblasts, myoblasts or keratinocytes, and secondly, the migratory cells of the immune system. The former provides a reservoir of systemic delivery of the therapeutic protein whereas the latter provides targeted delivery determined by the antigen specificity of the immune cells. Early validation has begun in animal models of rheumatoid arthritis.

Animals↗

Identification of thyroid stimulating hormone receptor-specific T cells in Graves' disease thyroid using autoantigen-transfected Epstein-Barr virus-transformed B cell lines.

The importance of thyrotropin receptor (TSHR) agonist antibodies in the manifestations of Graves' disease (GD) is recognized. There are, however, no convincing reports of TSHR-specific T cells. We have previously cloned T cells specific for thyroglobulin and thyroid peroxidase (TPO) from GD lymphoid infiltrates and used autologous EBV-transformed B cell lines (EBVL) transfected with an expression vector encoding TPO to efficiently detect TPO-specific T cells. Here we used EBVL transfected with TSHR to seek TSHR-specific T cells in the GD infiltrates, after cloning the in vivo activated T cells without antigen. 3 out of 30 clones responded vigorously and reproducibly to EBVL-TSHR, with a mean stimulation index > 7. Their release of IL-2, IL-4, and IL-10 after stimulation with soluble anti-CD3 and phorbol ester was indistinguishable from the other clones from this thyroid. However, they produced relatively little IFN gamma (median IL-4/IFN gamma ratio of 0.80) compared with the other clones (median IL-4/IFN gamma ratio 0.06). Thus, this new potent method of antigen presentation, using autoantigen-transfected EBVL, has permitted the first unequivocal identification of TSHR T cells in GD thyroid, with distinct Th0/Th2 characteristics, unlike previously cloned TPO-responsive cells which have Th1 characteristics.

Antigen Presentation↗

Inhibition of transfer of collagen-induced arthritis into SCID mice by ex vivo infection of spleen cells with retroviruses expressing soluble tumor necrosis factor receptor.

Collagen-induced arthritis can be transferred into severe combined immunodeficiency (SCID) mice by spleen cells from diseased DBA/1 mice. The development of arthritis in SCID animals can be prevented by infection ex vivo of DBA/1 spleen cells with retroviruses expressing the monomeric soluble human p75 tumor necrosis factor (TNF) receptor (TNF-R). In addition, a vector engineered to express a polycystronic mRNA with TNF-R and the herpes simplex virus thymidine kinase (HSVtk) gene, while producing low levels of TNF-R, had a limited effect which could be blocked by treating the animals with ganciclovir. A retroviral vector expressing the HSVtk gene alone had no effect on this arthritis transfer model with or without ganciclovir. Serum levels of TNF-R did not correlate with clinical signs, however, lower anti-collagen antibody levels corresponded with lack of clinical symptoms. These results indicate that local production of cytokine inhibitor is essential for therapeutic purposes while systemic levels may not be required.

Animals↗

Characterization of ligand binding by the human p55 tumour-necrosis-factor receptor. Involvement of individual cysteine-rich repeats.

Two soluble tumour-necrosis-factor-alpha(TNF)-binding proteins are derived from the extracellular domains of the p55 and p75 TNF receptors. They are considered to play a pivotal regulatory role in TNF-mediated inflammatory processes, including diseases such as rheumatoid arthritis, by competing with the cell surface receptors for TNF and lymphotoxin (LT, tumour-necrosis factor beta). The extracellular domains of the two receptors each contain four similar cysteine-rich repeats of about 40 amino acids, in common with several other cell surface proteins including the p75 nerve-growth-factor receptor and the CD40 and Fas antigens. The aim of this study was to characterize the involvement of the four cysteine-rich repeats of the human p55 TNF receptor in TNF and LT binding by both membrane-bound and soluble forms of the receptor. Individual repeats were systematically deleted by PCR mutagenesis and the variants transiently expressed in COS cells. Immunoprecipitated receptor variants exhibited the expected sizes on SDS/PAGE gels, and bound a panel of conformation-dependent anti-(TNF receptor) antibodies. Binding of TNF by the four soluble derivatives was compared with binding by the wild-type soluble receptor using a TNF-affinity column and a BIAcore Biosensor, by measurement of their ability to inhibit TNF cytotoxicity on WEHI cells, and 125I-TNF binding to U937 cells. delta 4, which lacks the fourth cysteine-rich repeat, bound TNF comparably with the full-length soluble receptor. TNF-binding affinity was unaltered by deletion of the fourth membrane-proximal cysteine-rich repeat, as determined by Scatchard analysis of the transmembrane derivatives. We conclude that the fourth cysteine-rich repeat is not required for TNF binding. In contrast, both the soluble and the transmembrane derivatives lacking any one of the first, second or third repeats failed to bind TNF. Although we cannot entirely exclude the possibility that this may be due to indirect conformational change, rather than the removal of essential epitopes, our results suggest that the first three repeats are each required for TNF binding by both the soluble and the cell-surface receptor.

Antibodies, Monoclonal↗

Transfection of thyroid autoantigens into EBV-transformed B cell lines. Recognition by Graves' disease thyroid T cells.

Autologous EBV-transformed B cell lines (EBVL) from a patient with Graves' disease (GD) were transfected with the expression vector pREP4 encoding thyroid peroxidase (TPO), the thyroid-stimulating hormone receptor (TSHR), or chloramphenicol acetyl transferase. The relevant proteins were expressed. The capacity of EBVL to present transfected Ag was assessed by using EBVL transfected with TPO (EBVL-TPO) to stimulate TPO-specific T cells cloned from autologous thyroid tissue; stimulation indices greater than 100 were consistently obtained, even at low APC:T cell ratios. EBVL-TPO and EBVL transfected with TSHR (EBVL-TSHR) were used to characterize the Ag specificity of five thyroid epithelial cell-specific T cell clones. Despite previous unresponsiveness to recombinant TPO or purified thyroglobulin, four of these clones responded vigorously to EBVL-TPO but none responded to EBVL-TSHR. Experiments were then performed to determine whether transfected EBVL were presenting endogenously synthesized TPO, or were taking up and reprocessing exogenous Ag shed from the surface of adjacent cells. The stimulatory capacity of EBVL-TPO was not transferable to untransfected EBVL by cell-free culture supernatant and to only a minor degree by EBVL-TPO-derived cell membrane fragments, indicating that the majority of the TPO presented by the transfected EBVL is endogenously synthesized. The clear and reproducible proliferative responses obtained illustrate the usefulness and potency of this method of Ag presentation to T cells. Because this system obviates the need for large numbers of autologous APC or purified recombinant Ag, it will be useful for obtaining autoantigen-reactive T cells and to help define the autoantigenic epitopes recognized.

Adult↗

TNF receptor fusion proteins are effective inhibitors of TNF-mediated cytotoxicity on human KYM-1D4 rhabdomyosarcoma cells.

KYM-1D4 cells are a subline derived from a human rhabdomyosarcoma which are highly sensitive to TNF-mediated cytotoxicity. They were selected for this study because they express human TNF-R and are therefore a more relevant target for comparing the potential therapeutic value of human TNF-inhibitory agents than the usual murine cell lines. Two recombinant soluble TNF-R-IgG fusion proteins, one containing p55 TNR-R, the other containing p75 TNF-R, and a recombinant monomeric soluble p55 TNF-R were all found to block the cytotoxicity generated by human TNF-alpha and LT as well as also murine TNF. The p55 TNF-R-IgG fusion protein (p55-sf2) was the most effective of the antagonists tested, requiring an equimolar, (based on a monomeric configuration of TNF-alpha) or a 3-fold higher (based on a trimeric configuration of TNF-alpha) molar concentration to inhibit the cytotoxicity mediated TNF-alpha by 50%. p55-sf2 was also as effective at inhibiting the cytotoxicity mediated by LT or murine TNF in the KYM-1D4 assay. In contrast, the monomeric soluble p55 TNF-R was the least effective inhibitor, requiring a > 4000-fold higher molar concentration than p55-sf2 to achieve a similar degree of protection. The fusion proteins, particularly p55-sf2, may be useful as human therapeutic agents, as at low concentrations they can prevent both TNF-alpha-mediated and LT-mediated effects on human cells. As TNF-R-IgG fusion proteins also block the action of murine TNF in vitro, they may also be useful in the investigation of murine models of human inflammatory disease.

Animals↗

Delivery of interferon to intracellular pathways by encapsulation of interferon into multilamellar liposomes is independent of the status of interferon receptors.

The antiproliferative effect of interferon alpha (IFN-alpha) against cultured 253J human bladder tumour cells was enhanced when IFN-alpha was encapsulated into multilamellar phospholipid liposomes (MLV). Moreover, significant cytostasis of a variant 253J subline (253J alpha R, resistant to the antiproliferative effect of IFN-alpha), could be achieved by delivery of IFN-alpha contained in liposomes. Although the two cell lines have the same number and affinity of cell receptors for IFN-alpha, the 253J alpha R cells did not down-regulate receptors as observed for the IFN-sensitive 253J cells. The IFN-response genes, 2'-5' oligosynthetase and gene 6-16 were equally induced in both cell lines following incubation of the cells with either free IFN-alpha or liposome-encapsulated IFN-alpha. Incorporation of radiolabelled IFN-alpha into cells by liposomes was independent of the status of IFN-receptors (the receptors being either occupied or down-regulated). These observations are consistent with the hypothesis that the antiproliferative effects of IFN-alpha against 253J and 253J alpha R cells may be mediated by internalization of IFN-alpha.

2',5'-Oligoadenylate Synthetase↗

Inhibition of interleukin 2 production and alteration of interleukin 2 mRNA processing by human T-T cell hybridoma-derived suppressor factors.

We investigated the mechanisms by which two human T-T cell hybridoma-derived suppressor factors (SFs) (designated 160 and 169) (Platsoucas et al., Hybridoma 1987;6:589; Kunicka et al., Hybridoma 1989;8:127) inhibit the proliferative response to mitogens by human peripheral blood mononuclear cells (PBMCs). Interleukin 2 (IL-2) production by human PBMCs cultured with concanavalin A or OKT3 monoclonal antibody for 12 or 36 hr in the presence of 160 or 169 SF was found to be inhibited > 80% when compared to control PBMC cultures stimulated with mitogen in the absence of SFs. This suppression of IL-2 production was not due to the SFs interfering with IL-2-induced proliferation of the IL-2-dependent murine cell clone used to determine the levels of IL-2. The proliferative responses of SF-treated PBMCs could not be restored by addition of exogenous recombinant human IL-2 (rIL-2) (1-100 U/ml). Furthermore, inhibition of the proliferative responses by the SFs could not be reversed by addition of exogenous rIL-1, rIL-2, or rIL-4 alone or in paired combinations. The expression of IL-2 receptors (TAC Ag) on concanavalin A-activated cultures at 12- or 36-hr time points was not affected by treatment with the SFs. Both the 160 and 169 hybridoma-derived SFs were found to cause the accumulation of an mRNA of 2.8 kb that hybridized with an IL-2-specific oligonucleotide probe. This 2.8-kb transcript was in addition to the expected 1.0-kb, transiently expressed IL-2 message, and it could be superinduced in the presence of cycloheximide. These results suggest that these SFs may be influencing RNA splicing pathways. These SFs appear to be useful molecules for probing the regulatory controls of lymphocyte proliferation and may constitute important physiological regulators of the immune response. In addition, they may have clinical activity for the treatment of patients that received transplants, patients with autoimmune diseases, and others.

Adult↗

A comparison of the properties of different retroviral vectors containing the murine tyrosinase promoter to achieve transcriptionally targeted expression of the HSVtk or IL-2 genes.

To target therapeutic genes specifically to melanoma cells, we have constructed recombinant retroviruses where transcriptional control of the murine interleukin-2 (mIL-2) or herpes simplex virus thymidine kinase (HSVtk) genes is provided by the 5' promoter region of the murine tyrosinase gene. Tissue-specific expression of these genes is observed both at the mRNA and protein levels in the B16 melanoma line compared with NIH3T3 fibroblasts. Thus, B16 cells infected with one such retrovirus containing the HSVtk gene exhibited a > 90% reduction in colony-forming efficiency after exposure to 1 microgram/ml ganciclovir, relative to controls, whereas similarly infected NIH3T3 cells showed < 10% reduction in colony-forming efficiency under comparable conditions. The degree of preservation of tissue-specific expression from the internal tyrosinase promoter depended upon the exact molecular design of the vector, possibly as a consequence of the interference between closely juxtaposed promoters within the provirus. Our results show that retroviral vectors can be prepared with the capacity to regulate expression of inserted genes specifically in a particular cell type and may be useful for developing efficient, targeted vectors for the in vivo delivery of genetic therapies for malignant melanoma.

3T3 Cells↗

Amplification of immunoglobulin transcripts by the non-palindromic adaptor polymerase chain reaction (NPA-PCR). Nucleotide sequence analysis of two human monoclonal antibodies recognizing two cell surface antigens expressed in ovarian, cervix, breast, colon and other carcinomas.

We have employed conventional polymerase chain reaction (PCR) and nonpalindromic adaptor PCR (NPA-PCR) for the amplification of the heavy- and light-chain transcripts of the cDNAs of two human monoclonal antibodies (MAb), designated AC6C3 (IgM, lambda) and CR4E8 (IgM, lambda), recognizing two different antigens expressed on the cell surface of human ovarian, cervix, breast, colon, melanoma and other carcinomas. With few exceptions these MAbs do not react with normal tissues. The AC6C3 MAb was developed by fusing regional lymph node lymphocytes from a patient with ovarian carcinoma with cells of the hybrid myeloma line SPAZ4, whereas the CR4E8 MAb was developed by fusing SPAZ4 cells with peripheral blood lymphocytes from a patient with cervical cancer, who was immunized intralymphatically with a viral oncolysate allogeneic tumor vaccine. The AC6C3 MAb immunoprecipitated from lysates of the ovarian tumor cell line SKOV3 a 32 kD polypeptide. The CR4E8 MAb reacted in Western blotting of lysates of the SW756 cervical carcinoma line with a 55 kD band. Cell surface immunofluorescence determinations using the fluorescence activated cell sorter revealed that both MAbs stain ovarian or cervix carcinoma tumor cell lines. We amplified the heavy chain transcripts of these two MAbs by conventional PCR, using mixed 5' end amplification primers, corresponding to the most conserved VH leader sequences and a C mu probe as a 3' end amplification primer. However, the mixed primer approach did not permit the amplification of the lambda-chain transcripts of these two human MAbs. This amplification was successfully carried out using the NPA-PCR that we have previously developed, specifically for the amplification of transcripts with unknown or variable 5' end, such as the T-cell receptors and the immunoglobulins. We have cloned and sequenced the amplified cDNAs. Sequence analysis showed that the V lambda segment of the AC6C3 MAb had 80.29% homology to the human germline Ig lambda-chain V lambda III.1, clone DPL2. The V lambda region of the CR4E8 MAb had 99.28% homology also to the human germline Ig lambda-chain, V lambda III.1, clone DPL23. The AC6C3 MAb lambda-chain employed a J segment with 98% homology to J3. The CR4E8 MAb light chain employed the J(H6-3C4) gene segment. Both MAbs utilized identical VH and JH gene segments and different DH segments. The VH regions of the AC6C3 MAb and of the CR4E8 MAb had, respectively, 98.6% and 98.98% homology to the human Ig germline heavy chain V region DP-7, a member of the VH-1 gene family.(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acid Sequence↗

2'-deoxy-5-azacytidine increases binding of cisplatin to DNA by a mechanism independent of DNA hypomethylation.

The chemotherapeutic agents 2'-deoxy-5-azacytidine (DAC) and cisplatin (cDDP) have been shown in vitro to be synergystic in their cytotoxicity toward human tumour cells. We have investigated possible molecular mechanisms underlying this synergy using the plasmid pSVE3 in vitro and after transfection into CMT3 cells. Increased binding of cDDP to DAC-substituted DNA generated in vivo was confirmed by flameless atomic absorption spectrophotometry (FAAS). The plasmid used in these experiments was unmethylated suggesting that DAC was effective in enhancing cDDP binding to DNA without acting as a hypomethylating agent, but by directly changing the topology of DNA. The role of DNA methylation in cDDP binding was studied using methylated and unmethylated plasmid incubated in vitro with cDDP. Restriction analyses and FAAS measurement of bound platinum indicated that methylated DNA bound more cDDP than unmethylated DNA. In addition, in vivo studies confirmed the in vitro observations since replication of methylated plasmid was inhibited to a greater extent than unmethylated plasmid.

Azacitidine↗

Preferential rearrangements of the V gamma I subgroup of the gamma-chain of the T-cell antigen receptor to J gamma 2C gamma 2 gene segments in peripheral blood lymphocyte transcripts from normal donors.

To investigate whether there are preferential VJC gene rearrangements of the gamma-chain of the human T-cell antigen receptor (TCR), we amplified and sequenced gamma-chain TCR transcripts from peripheral blood lymphocytes from adult normal donors. cDNA was synthesized from total RNA and amplified by the polymerase chain reaction (PCR) using 5' primers specific for either the V gamma I or the V gamma II subgroups of the gamma-chain of the TCR. The amplified cDNAs were then cloned and sequenced. The majority (approximately 83%) of the cDNAs employing V-I subgroup gene segments rearranged to J gamma 2 (J gamma 2.1 or J gamma 2.3) C gamma 2 gene segments. This was in contrast to the predominant rearrangement of the V gamma II subgroup (V gamma 9) to J gamma 1.2C gamma 1. The remaining 13% of the cDNAs employing V gamma I subgroup gene segments rearranged to J gamma 1.1C gamma 1 or J gamma 1.3C gamma 1. There was significant N diversity as well as imprecise joining at the VJ junction. gamma delta TCR utilizing the C gamma 1 gene segment are disulfide-linked, whereas those utilizing the C gamma 2 gene segment are non-disulfide-linked. These results demonstrate that peripheral blood gamma-chain transcripts exhibit preferential rearrangements of V gamma I subgroup gene segments to J gamma 2(2.1,2.3)C gamma 2 gene segments. By contrast, V gamma II subgroup (V gamma 9) transcripts exhibit rearrangements to J gamma 1.2C gamma 1.

Amino Acid Sequence↗

The use of molecular genetic markers to demonstrate the effect of organ environment on clonal dominance in a human renal-cell carcinoma grown in nude mice.

Transduction of the SN12C human renal-cell carcinoma line with the neoR gene produces a genetically "tagged" cell population within which individual clones can be identified if they dominate the tumor during its growth in vivo. We used this technique to determine whether the clones that dominate the primary local tumor and its metastases are the same or different when the tumor is growing in different organ sites in nude mice. The results show that clonal dominance is influenced by the organ environment in which the primary tumor grows, i.e., distinct clones dominated in the kidney, colon and subcutaneous sites. In addition, tumors grown in the orthotopic site (kidney) were all populated by the same dominant clones, and each distant visceral metastasis retained the same clonality. SN12C neoR-cells grown in an epithelial, ectopic site (colon) produced tumors with uniquely different dominant clones, and their visceral metastases retained the dominant pattern expressed by the parent tumor from which they were derived. In contrast, SN12C tumors growing subcutaneously showed a random pattern of clonal dominance in both their primary and metastatic sites. Parallel cytogenetic analyses could not demonstrate these patterns. We conclude that the organ environment significantly influences clonal dominance of human renal carcinoma and that tumor injection into orthotopic sites may produce a more reproducible selection of dominant clones.

Animals↗

Conversion of human interferon-beta from a secreted to a phosphatidylinositol anchored protein by fusion of a 17 amino acid sequence to its carboxyl terminus.

A number of cell-surface proteins are anchored in plasma membranes by a glycosylated phosphatidylinositol (PI) moiety that is covalently attached to the carboxyl-terminal amino acid of the mature protein. We have previously reported the construction of a cDNA clone of a truncated Platelet-derived growth factor (PDGF) receptor that consists of the extracellular domain without the transmembrane and cytoplasmic domains. In the construction of the vector, a sequence of 51 base pairs (bp) from the 3'-untranslated region of the receptor cDNA was linked in frame with the external domain coding sequence. The truncated receptor protein with the peptide VTSGHCHEERVDRHDGE fused to its carboxyl terminus was covalently attached to the membrane by a PI linkage and it was released by phosphatidylinositol specific-phospholipase C (PI-PLC). When the 51 bp sequence was deleted, the external domain receptor protein was secreted into the media. To determine whether the PI linkage of the protein was due to the 17 amino acids added, the peptide was fused to the carboxyl terminus of the secreted protein human Interferon-beta (hu-IFN-beta). Chinese hamster ovary (CHO) cells transfected with the hu-IFN-beta cDNA secreted the protein to the conditioned media, whereas CHO cells transfected with the carboxyl terminus modified-hu-IFN-beta cDNA did not secrete detectable levels of protein. CHO cells expressing the carboxyl terminus modified-hu-IFN-beta were treated with PI-PLC, the media and cell lysates were analyzed by SDS-PAGE after immunoprecipitation with antibodies against hy-IFN-beta. The modified protein is anchored to the plasma membrane by a PI linkage and it is specifically released by PI-PLC, whereas a control preparation of CHO cells expressing wild type hu-IFN-beta does not show the same pattern. The 17 amino acid peptide fused to the carboxyl terminus of IFN-beta directs attachment of a PI anchor and targets the fusion protein to the plasma membrane.

Amino Acid Sequence↗