Role of PrP in prion diseases.
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Biomedical subjects
Publications and source records attributed to C Weissmann.
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The transmissible agent that causes spongiform encephalopathies such as scrapie, the prion, is believed to be devoid of nucleic acid and identical with PrPSc, a modified form of PrPC. PrPC is a normal host protein encoded by a single copy gene (Prn-p) and is found predominantly on the surface of neurons. PrPSc, in contrast to PrPC, is resistant to protease and accumulates intracellularly. Prusiner proposed that PrPSc, when introduced into a normal host, causes the conversion of PrPC or its precursor into PrPSc ('protein only' hypothesis). If indeed PrP is an essential component of the prion, then an animal devoid of the PrP protein should be resistant to scrapie. We generated homozygous PrP 'knockout' mice. These Prn-p0/0 mice showed no gross abnormalities, and microscopic examination of brain sections of normal and Prn-p0/0 mice revealed no differences. Prn-p0/0, Prn-p+/+ and Prn-p0/+ mice were inoculated with scrapie agent; the clinical response as well as the prion titer at different time points are being determined.
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PrPC is a host protein anchored to the outer surface of neurons and to a lesser extent of lymphocytes and other cells. The transmissible agent (prion) responsible for scrapie is believed to be a modified form of PrPC. Mice homozygous for disrupted PrP genes have been generated. Surprisingly, they develop and behave normally for at least seven months, and no immunological defects are apparent. It is now feasible to determine whether mice devoid of PrPC can propagate prions and are susceptible to scrapie pathogenesis.
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In appropriate mammalian cells, interferon regulatory factor-1 (IRF-1) can activate the virus-responsive element of the IFN-beta promoter (VRE beta") or the synthetic oligonucleotide (GAAAGT)4. The latter contains two copies of the functional equivalent of PRDI, one of the regulatory domains of VRE beta". We prepared yeast strains containing an IRF-1 expression plasmid under the control of the galactose-inducible Gal1 promoter and a reporter plasmid with either (GAAAGT)4, VRE beta", or other test sequences placed upstream of a minimal promoter linked to the beta-galactosidase coding sequence. Upon induction of IRF-1 expression, the (GAAAGT)4-containing promoter was activated, but VRE beta" and all other sequences tested were inactive. Our results showed that IRF-1 belongs to a class of higher eukaryotic transcription factors that can interact with the yeast transcriptional machinery. Our findings also raised the question why the duplicate PRDI-like sequences in (GAAAGT)4 can be activated by IRF-1 synthesized in yeast, but not VRE beta", which also contains at least two PRDI-like sequences.
There is now very persuasive evidence that the transmissible agent for spongiform encephalopathies such as scrapie, consists of a modified form of the normal host protein PrPc, devoid of any nucleic acid. On the other hand, because there are many different strains of scrapie agent with distinct phenotypes which can be propagated in animals homozygous for the PrPc gene, it has been suggested that a nucleic acid must be a component of the agent. Can the two views be reconciled?
Multimeric AAGTGA and GAAAGT, when inserted before a minimal promoter, mediate virus-inducible transcription. We have determined that the active sequence within these multimers is TGAAAGTGAAAGT, which is structurally similar to GAGAAGTGAAAGT, a positive response element delineated in the beta-interferon gene promoter. Both sequences behave like protoenhancers and are similar as regards induction by virus or interferon regulatory factor 1 when supported by a simian virus 40 enhancer.
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We describe a specific and quantitative novel assay for biologically active human type I interferon (IFN), the MxR assay. It is based on a Vero cell line containing multiple copies of a hybrid gene consisting of the murine Mx promoter, which is responsive to type I IFN, linked to the human growth hormone (hGH) transcription unit. Exposure of this cell line to IFN-alpha or -beta for 12-48 hours results in the production of hGH that is measured by a commercially available radio-immune assay. The response to IFN-alpha is dose-dependent between 3 and 1000 units/ml. There is no response to TNF, IL-1 and a number of other cytokines and growth factors, and only a negligible response to IFN-gamma.
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Scrapie agent contains a proteinaceous component as well as an 'informational' molecule (suggested by the existence of distinct strains of scrapie). These operationally defined entities may be the same molecule, an infectious protein, or distinct, in which case a nucleic acid might encode the genetic information. Purification of scrapie agent enriched a protein, PrPSc, by virtue of its relative protease resistance. There is only a single PrP gene and the primary translation product of PrP mRNA is the same in normal and scrapie-infected brain; therefore the normal PrPC and the protease-resistant isoform, PrPSc, found in scrapie, probably result from different post-translational events. To search for scrapie-specific nucleic acid, globin RNA made in vitro was added to highly purified infectious preparations at a ratio of 10(3) molecules per infectious unit, nucleic acids were isolated and denatured, and cDNA synthesized using random oligonucleotide primers. Clones containing globin-related sequences were identified by in situ hybridization. 150 plaques not hybridizing to the globin probe were isolated. Inserts larger than 50 base pairs were analysed. By hybridization to a globin probe at reduced stringency all but four clones were found to contain small globin related inserts; two of these hybridized to hamster repetitive sequences as shown by Southern blot analysis. The other clones not related to hamster nucleic acids may be derived from unknown sources of contamination or from scrapie-specific nucleic acids.
Specific resistance of Mx+ mice to influenza virus is due to the interferon (IFN)-induced protein Mx. The Mx gene consists of 14 exons that are spread over at least 55 kilobase pairs of DNA. Surprisingly, the Mx gene promoter is induced as efficiently by Newcastle disease virus as it is by IFN. The 5' boundary of the region required for maximal induction by both IFN and Newcastle disease virus is located about 140 base pairs upstream of the cap site. This region contains five elements of the type GAAANN, which occurs in all IFN- and virus-inducible promoters. The consensus sequence purine-GAAAN(N/-)GAAA(C/G)-pyrimidine is found in all IFN-inducible promoters.
The virus-responsive element of the IFN-alpha 1 promoter, VRE(IFN alpha), comprises two imperfect 19 bp repeats, repA and repB. VRE(IFN alpha), tetrameric repA, and tetrameric GAAAGT (a subsequence of repB) or tetrameric AAGTGA conferred inducibility on a reporter gene when placed upstream of a complete or truncated promoter. Induced transcription was weak with a minimal promoter (TATA box only), but was strongly stimulated by the SV40 enhancer placed immediately upstream of the inducible element. Surprisingly, under noninduced conditions, tetrameric repA, GAAAGT, and AAGTGA (but not VRE(IFN alpha)) completely silenced enhancement of constitutive transcription by the SV40 72 bp repeat when interposed between the latter and the TATA box; silencing was fully abrogated by induction.
We have generated all possible single point mutations of the invariant 5' GT of the large beta-globin intron and determined their effect on splicing in vitro. None of the mutants prevented cleavage in the 5' splice region, but many reduced or abolished exon joining. The mutations GT----TT and GT----CT resulted in a shift of the 5' cleavage site on nucleotide upstream; in the case of the mutation GT----TT, this shift was reverted by a second site mutation within the 5' splice region. Our results suggest that the 5' cleavage site is determined not by the conserved GU sequence but by the 5' splice region as a whole, most probably via base-pairing to the 5' end of the U1 snRNA.
Two cDNA clones corresponding to genes that are induced at least 10-fold in peripheral human blood leukocytes by staphylococcal enterotoxin A were isolated and sequenced. Clone 1-3E encodes a 247-residue protein that comprises a putative signal sequence, and resembles a serine protease; the cognate mRNA is expressed in T lymphocyte clones but in none of the other human cell lines tested. The deduced protein sequence is most closely related (68% homology) to that of the postulated protease CCPI from activated murine cytotoxic T lymphocytes and to that of rat mast cell protease II (47% homology). The other cDNA, 3-10C, encodes a protein of 99 residues that resembles human beta-thromboglobulin (42% homology); the cognate mRNA was also found in SEA-stimulated U937 cells, a histiocytic lymphoma-derived cell line.