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Environmental prevalence and persistence of Salmonella spp. in outdoor swine wallows.

Swine can harbor Salmonella in their gastrointestinal tracts. It has been estimated that up to 48% of the U.S. swine herd may carry Salmonella. Housing sows in farrowing stalls has become controversial due to animal welfare-based criticisms. An alternative production system is to keep sows outdoors on pasture with access to individual farrowing huts. This study was designed to determine the effects of two production systems on indicator bacteria and Salmonella of sows housed indoors in farrowing stalls (n = 52) compared to sows housed outdoors (n = 52) in English style huts. Each farrowing radial contained one wallow, from which mud (n = 290) and water (n = 290) samples were collected weekly. All samples were analyzed for generic E. coli, coliforms and Salmonella. No differences (p > 0.05) were detected in Salmonella, generic E. coli and coliform populations between indoor farrowing stalls and outdoor farrowing huts. However, all 8 outdoor wallows contained Salmonella spp. at some point during the study (n = 49 Salmonella isolates). Salmonella genotypes persisted within some wallows for >5 months, and genetically indistinguishable Salmonella isolates were found in multiple wallows. Salmonella isolated from outdoor sow feces were genetically indistinguishable by PFGE from Salmonella isolated from wallows (n = 33) throughout the study, indicating that pathogenic bacteria were cycling between swine and their environment. In conclusion, the role of wallows in disseminating Salmonella within an outdoor swine herd appears to be significant.

Animal Husbandry↗

A quantitative study of the anatomy and distribution of coronary arteries in swine in comparison with other animals and man.

The coronary circulation of swine was studied to establish adequate baseline information for using swine in cardiovascular research. Of 65 hearts from domestic and miniature pigs, 45 were injected with a methacrylate plastic and prepared as coronary artery casts whose branches were described and measured, and 20 were injected with different coloured dyes in the right, left anterior descending, and circumflex coronary arteries so that horizontal sections of the heart showed the distribution of each artery and the source of blood supply to particular areas or structures of the heart. Like man, the swine had a left coronary artery that was larger in diameter and longer than the right coronary artery. The right coronary artery was almost always dominant (78%), supplying the posterior septum and atrioventricular node via the posterior descending coronary artery. Eight (17%) of the hearts possessed a balanced blood supply. Two (5%) hearts had a left dominant supply. The intracoronary artery dye injections showed that 72.4% of the right ventricular mass was supplied by the right coronary artery and 27.6% by the left anterior descending coronary artery. In the left ventricle 49% of the mass was supplied by the left anterior descending coronary artery, 25.5% by the right coronary artery, and 25.5% by the circumflex coronary artery. The left anterior descending coronary artery supplied 58% of the interventricular septal mass, while the posterior descending coronary artery supplied 42%. The distribution of the left anterior descending coronary artery branches to the ventricular wall varied inversely in number and size of its diagonal branches (2-9) with the obtuse marginal branches of the circumflex coronary artery which were occasionally more numerous or extended to the apex. The blood supply to the sinoatrial node was always by a branch of the right coronary artery. This analysis shows that not only the coronary anatomy but also the distribution of blood supply to particular areas or structures of the swine heart are very similar to that of humans.

Animals↗

Experimental rectus abdominis myocutaneous and rectus abdominis myoperitoneal flaps as urinary bladder wall substitutes in miniature swine.

An experiment was performed in Yucatan miniature swine to determine the feasibility and characteristics of musculocutaneous or musculoperitoneal flaps as urinary bladder wall substitutes. In five swine, a single-pedicle skin island flap (rectus abdominis myocutaneous, RAM/C) was sutured into the bladder. In five other swine the flap was a peritoneum island (rectus abdominis myoperitoneal, RAM/P). Three swine were sham-operated controls. The patches were in place for 20 weeks, remaining viable and elastic. Inflammation, maceration, and infection were absent. Skin patch histology was unchanged. The peritoneal patches became resurfaced with uroepithelium. The sham bladder volume (ml/kg body weight) did not differ significantly from RAM/P bladder volume (p = 0.54). RAM/C bladders were slightly smaller than shams (p = 0.11) and significantly smaller than RAM/P bladders (p = 0.03). Substitution of the bladder wall with RAM patch flaps is feasible. This is an important preliminary step toward our goal of nonenteral urinary bladder wall substitution.

Abdominal Muscles↗

Tolerance to musculoskeletal allografts with transient lymphocyte chimerism in miniature swine.

BACKGROUND: Although transplantation of musculoskeletal allografts in humans is technically feasible, the adverse effects of long-term immunosuppression subject the patient to high risks for correcting a non-life-threatening condition. Achieving immunologic tolerance to musculoskeletal allografts, without the need for chronic immunosuppression, could expand the clinical application of limb tissue allografting. Tolerance to musculoskeletal allografts has been accomplished previously in miniature swine in our laboratory. Although stable, mixed chimerism has been suggested as the mechanism underlying long-term tolerance in a rat limb model, the mechanism of this tolerance induction has not been established. This report explores the possible relationship between hematopoietic chimerism and tolerance to musculoskeletal allografts in swine. METHODS: Twelve miniature swine underwent vascularized musculoskeletal allograft transplantation from histocompatibility complex (MHC) matched, minor antigen-mismatched donors. Eight animals received a 12-day coprse of cyclosporine, one of which was excluded due to subtherapeutic levels. Four recipients were not immunosuppressed. Serial biopsies to assess graft viability and flow cytometry to assess chimerism were performed. Donor and third-party skin grafts were placed on recipients with surviving allografts greater than 100 days to validate tolerance. RESULTS: Both groups developed early peripheral chimerism, but this chimerism became undetectable by postoperative day 19 in the cyclosporine group and by day 13 in the control group. Animals receiving cyclosporine developed permanent tolerance to their allografts, whereas those not receiving cyclosporine rejected their allografts in 6-9 weeks. Animals demonstrating tolerance to their bone allografts also demonstrated prolonged donor skin graft survival. CONCLUSIONS: Induction of tolerance to musculoskeletal allografts can be achieved in the MHC matched swine. Although hematopoietic chimerism is present in the immediate postoperative period, persistent, long-term chimerism does not seem to be necessary for maintenance of such tolerance.

Animals↗

Peripheral regulation of graft-versus-host alloreactivity in mixed chimeric miniature swine.

BACKGROUND: Despite the presence of circulating donor-derived T cells during the induction of mixed chimerism across MHC barriers in miniature swine, severe graft-versus-host disease was avoided in the majority of animals. In this study, we investigated the possible roles of recipient and donor lymphoid populations in the regulation of donor-anti-recipient alloreactivity. METHODS: Mixed chimerism across a full MHC-mismatch barrier was established in miniature swine using a high-dose allogeneic peripheral blood stem cell protocol. Peripheral blood mononuclear cells from mixed chimeric swine were co-cultured with naïve donor-matched responders and naïve recipient-matched stimulators in mixed lymphocyte reactions. RESULTS: Peripheral blood mononuclear cells from mixed chimeras inhibited donor-anti-recipient proliferation. This suppression was radioresistant to 25 Gy. Suppression of donor-anti-recipient alloreactivity was not observed in mixed lymphocyte co-cultures when donor-derived cells were added in the absence of recipient-derived cells. CONCLUSIONS: These results suggest an association between the presence of an active and relatively radioresistant cell population, demonstrable in vitro, and the regulation of graft-versus-host disease across MHC barriers in mixed chimeric miniature swine.

Animals↗

Amiprilose in the prevention of restenosis after coronary intervention in a swine model.

BACKGROUND: Amiprilose hydrochloride is a synthetic carbohydrate with anti-inflammatory and antiproliferative properties. This study tested the potential benefit of amiprilose in preventing coronary artery restenosis in a swine model. METHODS: The swine restenosis model was prepared using Hanford miniature swine made atherosclerotic with coronary abrasion, high-fat and high-cholesterol feeding, and intracoronary stenting. Eighteen animals were randomized to receive amiprilose, 100 mg/kg body weight orally twice per day (n = 9), or no amiprilose (n = 9) beginning 5 days before stenting and continuing through 4 weeks until sacrifice. Presacrifice quantitative coronary angiography and postsacrifice histologic examination revealed the degree of intimal proliferation. RESULTS: Coronary angiography revealed no difference in percentage-diameter stenosis between the amiprilose and control groups (left anterior descending artery [LAD], 46% +/- 10% vs 44% +/- 17%; circumflex artery [CFX], 43% +/- 21% vs 42% +/- 15%; right coronary artery [RCA], 37% +/- 11% vs 34% +/- 9%; P = not significant [NS]), respectively, or in change in lumen diameter from poststenting to presacrifice (LAD, -1.0 +/- 0.4 mm vs -1.1 +/- 0.7 mm; CFX, -1.2 +/- 0.8 mm vs -1.0 +/- 0.7 mm; RCA, -1.1 +/- 0.4 mm vs -1.0 +/- 0.4 mm; P = NS). Morphometric histologic analysis likewise showed no difference in percentage-area stenosis (LAD, 55% +/- 14% vs 55% +/- 15%; CFX, 53% +/- 15% vs 54% +/- 12%; RCA, 39% +/- 17% vs 39% +/- 20%; P = NS) or in maximal intimal thickness. CONCLUSION: Amiprilose hydrochloride did not prevent coronary intimal proliferation in this swine model of restenosis.

Angioplasty, Balloon, Coronary↗

Gene expression of porcine lymphotrophic herpesvirus-1 in miniature Swine with posttransplant lymphoproliferative disorder.

Porcine lymphotropic herpesvirus-1 (PLHV-1) is a gamma-herpesvirus related to Epstein-Barr virus (EBV) and associated with development of posttransplant lymphoproliferative disorder (PTLD) following allogeneic stem cell or spleen transplantation in miniature swine. Oligonucleotide microarrays were designed based on known open reading frames (ORFs) of PLHV-1. Expression was compared by cohybridization of cDNA from lymph nodes of PLHV-1+ swine after allogeneic spleen transplantation between either: 1) PTLD-affected and PTLD-unaffected swine; or 2) PTLD-affected swine vs. samples from the same animal prior to diagnosis. In PTLD-affected animals, consistent upregulation (nine ORFs) and downregulation (four ORFs) of PLHV-1 mRNA was observed in comparison to those without PTLD. No differences in gene expression were discovered at the time of clinical PTLD diagnosis compared to six to nine days prior to diagnosis in the same animals. This model provides insights into the pathogenesis of PTLD and, by extension, potential diagnostic and therapeutic tools for human EBV-associated PTLD.

Animals↗

Antigenic conservation of H1N1 swine influenza viruses.

Influenza viruses of the H1N1 subtype have been continually circulating in pigs in the U.S.A. for at least 50 years. To examine the level of antigenic variation in these swine viruses, a panel of 60 monoclonal antibodies (MAbs) to the haemagglutinin (HA) of recent swine isolates was prepared. Evaluation of neutralization escape mutants selected with these MAbs defined four antigenic sites on the HA, two of which overlap. Swine viruses isolated over 24 years in an enzootic area in Wisconsin were examined by ELISA and haemagglutination inhibition (HI) with these MAbs and the results indicated that the antigenic sites defined by these MAbs were highly conserved in these viruses. In comparing recent H1N1 viruses from pigs, turkeys, ducks and humans, changes in the antigenic sites were detected on the basis of HI reactivity. However, results of ELISA with these viruses clearly showed that the antigenic sites were still present on almost all H1N1 viruses of swine origin; thus, altered reactivity of these viruses in HI tests with MAbs was not a reflection of changes in the antigenic sites defined by the MAbs. It seems likely that the variation detected in these viruses occurs by a mechanism other than immune selection.

Animals↗

Persistence of a 1930 swine influenza A (H1N1) virus in Quebec.

Two antigenically distinct H1N1 influenza A viruses were isolated during an outbreak of respiratory disease in Quebec swine in 1990/91. Analysis of haemagglutinin and partial nucleoprotein sequences indicated that one was a variant of the swine H1N1 influenza virus circulating in the American Midwest whereas the other was very similar to virus isolated from swine in 1930. The existence of this latter isolate supports the concept that influenza viruses can be maintained for long periods in swine, perhaps in geographically limited pockets. Serological evidence indicates that these distinct strains continued to circulate widely in south-central Quebec until at least 1993.

Amino Acid Sequence↗

Prevalence of swine Torque teno virus in post-weaning multisystemic wasting syndrome (PMWS)-affected and non-PMWS-affected pigs in Spain.

The present study was designed to investigate the prevalence of swine Torque teno virus (TTV) in post-weaning multisystemic wasting syndrome (PMWS)-affected and non-affected Spanish swine. Nested PCR (nPCR) assays to detect two distinct TTV genogroups were applied. A significantly higher prevalence of TTV infection was found in sera from PMWS-affected animals (97 %) than in sera from non-PMWS-affected animals (78 %). Whilst PMWS-affected pigs (91 %) were more likely to be infected with TTV from genogroup 2 than non-PMWS-affected swine (72 %), no such difference was observed with genogroup 1. Nucleotide sequences of nPCR products were 91-99 % identical between strains within a genogroup. In contrast, inter-genogroup sequence identities were 49-58 %. Phylogenetic analyses demonstrated that genogroups form different clusters without association with PMWS or porcine circovirus type 2 infection status of the animals. These results indicate a high prevalence of both swine TTV genogroups in Spain, being present more frequently in PMWS-affected animals than in non-PMWS-affected animals.

Animals↗

Identification of new apolipoprotein B epitopes and haplotypes and their distribution in swine populations.

Results from comparative immunogenetic studies on inheritance and identification of four new apolipoprotein B (apoB) allotypes and three additional apoB haplotypes and their distribution in miniature and domestic swine are presented. Immunological surveys on the four new and 16 previously described Lpb allotypes and genetic analysis of their segregation in progenies, of miniature and domestic swine and their crosses, indicate that three new allotypes designated Lpb9, Lpb10 and Lpb101 are individual (mutant) apoB epitopes, each representing a discriminating marker for one of the new apoB haplotypes specified by three new apoB alleles designated Lpb9, Lpb10 and Lpb101. The fourth allotype, Lpb20, is one of the common epitopes forming the alternative epitope pair with Lpb10, and is a constituent of each of the eight previously described and two new apoB haplotypes. The new apoB alleles have so far been found only in miniature swine, with Lpb10 being the most frequent in the Göttingen, Vietnamese Pot-belly and Japanese Miniature, Lpb9 was detected only in Minnesota Miniature and Lpb101 only in Vietnamese Potbelly. The common allotype, Lpb20, shares immunological similarities with human apoB indicating its ancestral origin, whereas none of the alloreagents detecting the three individual apoB variants, Lpb9, Lpb10 or Lpb101, showed cross-reactivity with human apoB, suggesting their exclusive swine origin and evolvement during speciation through mutations.

Alleles↗

Association of tumour necrosis factor and acute phase reactant changes with post arrival disease in swine.

Severe weight loss in the absence of respiratory, enteric or systemic clinical disease or gross pathologic lesions is often observed when immunologically naive boars are placed in conventional health swine facilities. Affected animals develop this weight loss in spite of receiving pre-entry vaccinations against common swine pathogens, such as Haemophilus parasuis or Mycoplasma hyopneumoniae. In many cases, the weight loss is non-responsive to long term antibiotic therapy. In order to determine the relationships between the severity of post arrival weight loss and disease and its potential immunological or physiological indicators, tumour necrosis factor (TNF) and acute phase reactant levels were correlated with the clinical status in immunologically naive boars following their transfer to a conventional facility. Boars had higher TNF (P < 0.0001) and plasma protein (P = 0.0054) levels and decreased zinc (P = 0.0004) levels during periods of clinical sickness. Likewise, peak and average plasma TNF, serum haptoglobin, and serum zinc were correlated indicating a prolonged stress or pathogenic insult (r = 0.89, P < 0.0001 for TNF; r = 0.67, P = 0.01 for haptoglobin; r = 0.73, P = 0.005 for zinc). An acute phase response, a systemic TNF increase and the development of a lymphopenia were observed in post arrival disease in swine. This is the first time cytokines and acute phase reactants have been investigated in a field study involving immunologically naive or high health swine.

Acute-Phase Proteins↗

Effect of feeding chlortetracycline on the reservoir of Salmonella typhimurium in experimentally infected swine.

Swine were fed either a diet containing 110 mg of chlortetracycline (CTC) per kg (100 g/ton) or a control diet and were inoculated orally with Salmonella typhimurium that was either susceptible or resistant to CTC. The quantity, duration, and prevalence of fecal elimination of S. typhimurium, as well as the effect of CTC on the transmission of S. typhimurium from infected to uninfected swine, were determined. When animals were infected with CTC-resistant S. typhimurium, CTC increased the quantity (P < 0.05), duration (P < 0.05), and prevalence (P < 0.01) of fecal shedding, the transmission from infected to uninfected swine, and the recovery of the infecting organism at necropsy. When animals were infected with CTC-susceptible S. typhimurium, CTC reduced the quantity (between 7 and 10 days postinfection) (P < 0.01), duration (P < 0.05), and prevalence (P < 0.05) of fecal shedding, the transmission from infected to uninfected swine, and the recovery of the infecting organism at necropsy. Resistance to tetracycline was transferred in vivo to 4 and 6% of the susceptible infecting S. typhimurium recovered from the untreated and treated groups, respectively. The increased reservoir of S. typhimurium and the transfer of resistance to susceptible S. typhimurium have implications for both animal and public health.

Animal Feed↗

Hemagglutinin mutants of swine influenza virus differing in replication characteristics in their natural host.

In two mutant clones (L and H) of A/NJ/11/76 (Hsw 1N1) influenza viruses which differ slightly antigenically and markedly in replication characteristics in chicken embryos and Madin Darby canine kidney cells, these pleiotropic differences are mediated by mutation in the hemagglutinin gene (E. D. Kilbourne, Proc. Natl. Acad. Sci. U.S.A. 75:6258--6262, 1978). Experimental infection of swine with either the mutant L and H clones or recombinant viruses differing genetically only with respect to the presence of L or H hemagglutinin demonstrated greater infectivity for the natural host of viruses bearing the L hemagglutinin. Introduction of the L but not the H hemagglutinin gene into the human influenza virus A/PR/8/34 rendered it infective for swine. Both L and H variants were isolated from pigs naturally infected with contemporary swine influenza viruses when selective conditions for the suppression of the more prevalent L mutant were employed. The L and H mutants of swine influenza virus are yet another example of viral dimorphism in nature and probably are not mere artifacts of laboratory selection. In any event, the frequent apparent allelic appearance of the two forms suggests frequent mutation and/or reversion involving a point mutation in the hemagglutinin gene. The present studies demonstrate the importance of a single gene in the pathogenesis of an influenza viral infection in its natural host.

Animals↗

Characterization of chloramphenicol resistance in beta-hemolytic Escherichia coli associated with diarrhea in neonatal swine.

Ninety beta-hemolytic Escherichia coli isolates associated with diarrhea in neonatal pigs from multiple farms in Oklahoma were investigated for known associated disease serotypes, virulence factors, ribotypes, and antimicrobial susceptibility phenotypes. Fifteen different serotypes were observed, with 58% of isolates belonging to groups that produce one of three major enterotoxins: O149, O147, and O139. Thirty percent of the swine E. coli isolates possessed a combination of F4 fimbriae and the heat-labile toxin and heat-stable toxin B enterotoxins. Seventy-three percent of the E. coli isolates were resistant to five or more antibiotics. Interestingly, 53% of swine E. coli isolates exhibited resistance to chloramphenicol (CHL), an antibiotic whose use in food animals has been prohibited in the United States since the mid-1980s. The cmlA gene, which encodes a putative CHL efflux pump, was detected by PCR in 47 of the 48 CHL-resistant isolates, and 4 of these also possessed the cat2 gene, which encodes a chloramphenicol acetyltransferase. The one CHL-resistant isolate that did not contain either cmlA or cat-2 possessed the flo gene, which confers resistance to both florfenicol and CHL. To determine whether CHL-resistant swine E. coli isolates represented dissemination of a clonal strain, all 90 isolates were analyzed by ribotyping. Seventeen distinct E. coli ribogroups were identified, with CHL resistance observed among the isolates in all except one of the major ribogroups. The identification of the cmlA gene among diverse hemolytic enterotoxigenic E. coli strains demonstrates its broad dissemination in the swine production environment and its persistence even in the absence of CHL selection pressure.

Animals↗

Characterization of multiple-antimicrobial-resistant Escherichia coli isolates from diseased chickens and swine in China.

Escherichia coli isolates from diseased piglets (n = 89) and chickens (n = 71) in China were characterized for O serogroups, virulence genes, antimicrobial susceptibility, class 1 integrons, and mechanisms of fluoroquinolone resistance. O78 was the most common serogroup identified (63%) among the chicken E. coli isolates. Most isolates were PCR positive for the increased serum survival gene (iss; 97%) and the temperature-sensitive hemagglutinin gene (tsh; 93%). The O serogroups of swine E. coli were not those typically associated with pathogenic strains, nor did they posses common characteristic virulence factors. Twenty-three serogroups were identified among the swine isolates; however, 38% were O nontypeable. Overall, isolates displayed resistance to nalidixic acid (100%), tetracycline (98%), sulfamethoxazole (84%), ampicillin (79%), streptomycin (77%), and trimethoprim-sulfamethoxazole (76%). Among the fluoroquinolones, resistance ranged between 64% to levofloxacin, 79% to ciprofloxacin, and 95% to difloxacin. DNA sequencing of gyrA, gyrB, parC, and parE quinolone resistance-determining regions of 39 nalidixic acid-resistant E. coli isolates revealed that a single gyrA mutation was found in all of the isolates; mutations in parC together with double gyrA mutations conferred high-level resistance to fluoroquinolones (ciprofloxacin MIC, >/=8 microg/ml). Class 1 integrons were identified in 17 (19%) isolates from swine and 42 (47%) from chickens. The majority of integrons possessed genes conferring resistance to streptomycin and trimethoprim. These findings suggest that multiple-antimicrobial-resistant E. coli isolates, including fluoroquinolone-resistant variants, are commonly present among diseased swine and chickens in China, and they also suggest the need for the introduction of surveillance programs in China to monitor antimicrobial resistance in pathogenic bacteria that can be potentially transmitted to humans from food animals.

Animals↗

Inactivation of the RNase activity of glycoprotein E(rns) of classical swine fever virus results in a cytopathogenic virus.

Envelope glycoprotein E(rns) of classical swine fever virus (CSFV) has been shown to contain RNase activity and is involved in virus infection. Two short regions of amino acids in the sequence of E(rns) are responsible for RNase activity. In both regions, histidine residues appear to be essential for catalysis. They were replaced by lysine residues to inactivate the RNase activity. The mutated sequence of E(rns) was inserted into the p10 locus of a baculovirus vector and expressed in insect cells. Compared to intact E(rns), the mutated proteins had lost their RNase activity. The mutated proteins reacted with E(rns)-specific neutralizing monoclonal and polyclonal antibodies and were still able to inhibit infection of swine kidney cells (SK6) with CSFV, but at a concentration higher than that measured for intact E(rns). This result indicated that the conformation of the mutated proteins was not severely affected by the inactivation. To study the effect of these mutations on virus infection and replication, a CSFV mutant with an inactivated E(rns) (FLc13) was generated with an infectious DNA copy of CSFV strain C. The mutant virus showed the same growth kinetics as the parent virus in cell culture. However, in contrast to the parent virus, the RNase-negative virus induced a cytopathic effect in swine kidney cells. This effect could be neutralized by rescue of the inactivated E(rns) gene and by neutralizing polyclonal antibodies directed against E(rns), indicating that this effect was an inherent property of the RNase-negative virus. Analyses of cellular DNA of swine kidney cells showed that the RNase-negative CSFV induced apoptosis. We conclude that the RNase activity of envelope protein E(rns) plays an important role in the replication of pestiviruses and speculate that this RNase activity might be responsible for the persistence of these viruses in their natural host.

Animals↗

Identification of a full-length cDNA for an endogenous retrovirus of miniature swine.

Endogenous retroviruses of swine are a concern in the use of pig-derived tissues for xenotransplantation into humans. The nucleotide sequence of porcine endogenous retrovirus taken from lymphocytes of miniature swine (PERV-MSL) has been characterized. PERV-MSL is a type C retrovirus of 8,132 bp with the greatest nucleic acid sequence identity to gibbon ape leukemia virus and murine leukemia virus. Constitutive production of PERV-MSL RNA has been detected in normal leukocytes and in multiple organs of swine. The copy numbers of full-length PERV sequences per genome (approximately 8 to 15) vary among swine strains. The open reading frames for gag, pol, and env in PERV-MSL have over 99% amino acid sequence identity to those of Tsukuba-1 retrovirus and are highly homologous to those of endogenous retrovirus of cell line PK15 (PK15-ERV). Most of the differences in the predicted amino acid sequences of PK15-ERV and PERV-MSL are in the SU (cell attachment) region of env. The existence of these PERV clones will enable studies of infection by endogenous retroviruses in xenotransplantation.

Amino Acid Sequence↗