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Distinct Evolutionary Signatures of Human Parainfluenza Viruses 2 and 4 Reveal Host Antagonism Divergence and Phylogenetic Discordance.

Human parainfluenza virus 2 (HPIV-2) and human parainfluenza virus 4 (HPIV-4) are significant but underappreciated respiratory pathogens, particularly among high-risk populations including children, the elderly, and immunocompromised individuals. In this study, we sequenced 101 HPIV-2 and HPIV-4 genomes from respiratory samples collected in western Washington State and performed comprehensive evolutionary analyses using both new and publicly available sequences. Phylogenetic and phylodynamic analyses revealed that both HPIV-2 and HPIV-4 evolve at significantly faster rates compared to the mumps virus, a reference human orthorubulavirus. Notably, while HPIV-2 demonstrated the highest evolutionary rates in the surface glycoprotein HN, consistent with humoral immune-driven selection, the innate immune antagonist V/P gene evolved fastest in HPIV-4. We identified a hypervariable region within the HPIV-4V/P protein (residues 35 to 75), which structural modeling placed in a loop overlapping a known interferon antagonism domain in other paramyxovirus V proteins, though HPIV-4 is functionally incompetent in this activity. Expanded phylogenetic analysis across the Paramyxoviridae family uncovered a striking evolutionary discordance: while the HN glycoprotein and L polymerase of HPIV-4 and its 2 closest bat-derived viruses clustered within the Orthorubulavirus genus, their nucleoprotein (N), phosphoprotein (P), matrix (M), and fusion (F) proteins formed a distinct lineage outside the Rubulavirinae subfamily. Together, these findings highlight the distinct evolutionary trajectories of HPIV-2 and HPIV-4, raise hypotheses around complex Paramyxoviridae zoonotic events including recombination-like patterns, and demonstrate limitations of current L protein-based taxonomic classification schemes.

Humans

[Interfering and interferonogenic activity of attenuated and original para-influenza viral strains].

A higher interfering activity of attenuated (vaccine) strains of parainfluenza virus types 1, 2 and 3 which had undergone a long-term adaptation to cell cultures as compared to the original viruses was established. The interferon-inducing activity of vaccine parainfluenza virus types 2 and 3 was also higher than that of the original viruses. The high interfering and interferon-inducing activity of attenuated parainfluenza virus strains of type 2 and 3 correlated with reduced virulence of these variants for man. These tests may be used for the assessment of virulence of parainfluenza virus strains type 2 and 3 in the laboratory.

Cells, Cultured

Epidemiology of respiratory viral infection among paediatric inpatients over a six-year period in north-east England.

During a 6-year, hospital-based study at Newcastle upon Tyne five consecutive winter epidemics of respiratory syncytial (R.S.) virus infection occurred; the virus was identified in 1428 cases, showing that 1 in 50 live-births were admitted to hospital with R.S. virus infection. Epidemics were inversely related to temperature and to number of hours of sunshine. Parainfluenzaviruses, the second largest group of pathogens, were identified in 543 cases; most infections by this group were due to parainfluenzavirus type 3, which accounted for admission to hospital of 1 in 300 live-births. Epidemics of parainfluenza type 3 showed a summer peak (there was often a second peak in autumn) and a positive correlation with temperature and number of hours of sunshine. Epidemics of parainfluenza 1 and 2 occurred together, but only every 2 years. Influenza A epidemics occurred every winter; they coincided with, and had the same climatic correlations as, epidemics of R.S. virus infections. Influenza A was the second most frequently identified virus, and was associated with the admission to hospital of 1 in 100 to 1 in 500 live-births. Knowledge of the epidemiology of respiratory viral infections may help in the planning of preventative measures.

Adolescent

Lymphocyte response to virus antigens in systemic lupus erythematosus.

The cell-mediated immune response of lymphocytes to rubella, measles, parainfluenza types 1, 2, and 3, varicella-zoster and herpes virus type 1 virus antigens was evaluated in 15 SLE patients and 15 matched controls by incorporating 3H-thymidine in whole blood cultures as a measure of blastic transformation. SLE patients were less responsive than normal individuals to six of eight virus antigens tested. Culture of washed SLE cells in AB plasma did not reverse the hyporesponsiveness. The results indicated that a functional impairment of the circulating lymphocytes appeared to be responsible for the in vitro hyporesponsiveness of SLE patients to virus antigens.

ABO Blood-Group System

Elevated parainfluenza virus type 1 antibody in patients with subacute sclerosing panencephalitis.

Parainfluenza virus hemagglutination inhibition (HI) antibodies were determined 3 times in the sera of 9 patients with subacute sclerosiing panencephalitis (SSPE) and 20 healthy controls matched for age and place of residence. Serum antibody against parainfluenza virus type 1 was significantly elevated in SSPE patients as compared with controls, whereas antibodies against type 2 and 3 were found to be in normal ranges. Higher titres of parainfluenza virus type 1 antibody might depend on: (1) dual viral infection, (2) cross-reaction between antigens of SSPE virus and parainfluenza virus type 1, and (3) non-specific activation of latent virus type 1 genome. The latter explanation seems to be particularly interesting since the parainfluenza type 1 antibody titres remained constant despite the clinical progression. This finding is comparable to the elevated titres against Epstein-Barr virus of adenovirus which have been found occasionally in this disease.

Adolescent

Correlation of exposure to various respiratory pathogens with farmer's lung disease.

Complement-fixing antibodies (CFA) to a panel of microorganisms commonly associated with respiratory disease were measured in a number of agricultural populations. The panel included Mycoplasma pneumoniae, influenza viruses A and B, parainfluenza virus types 1, 2, and 3, adenovirus, and respiratory syncytial virus. The agricultural populations were grouped according to a clinical history of farmer's lung disease (FLD) and the presence of antibodies to the thermophilic actinomycetes (TA). Farmers with precipitating antibody activity to one or more of the TA (groups I and II) demonstrated a greater frequency of CFA to M. pneumoniae and parainfluenza virus types 1, 2, and 3 than those groups without antibody to the TA, but the level of CFA was not higher in the positive subjects. Immunoglobulin levels were also elevated in groups I and II when compared to the control groups. Unlike IgG and IgM, IgA was elevated only in the farmers who had a clinical history of FLD (group I) but not in farmers without a clinical history. The results suggest that farmers who develop FLD are exposed to a wider variety of pathogens than are other farmers, but do not respond in an accelerated manner.

Actinomycetales

Epidemiology of herpesvirus and respiratory virus infections. Part 1. Serologic findings.

The majority of the population group studied had complement-fixation antibodies toward the following viruses: influenza type A, respiratory syncytial, cytomegalovirus, and Epstein-Barr. The herpesvirus infections (cytomegalovirus and Epstein-Barr virus) seemed to be prevalent. Only low incidences of antibodies were found toward adenovirus, influenza type B, influenza type C, and parainfluenza type II. A total of 70 aucte virus infections (increases of antibody titer) were diagnosed in 49 patients. Besides cytomegalovirus, no particular virus infection occurred in a large number. Only 11 of the 70 acute virus infections diagnosed serologically were accompanied by clinical signs of disease

Adenoviridae

Whole Genome Sequencing and Genetic Diversity of Respiratory Viruses Detected in Children With Acute Respiratory Infections: A One-Year Cross-Sectional Study in Senegal.

Acute respiratory infections (ARI) are a health priority, especially in countries with limited resources. They are a major cause of morbidity and mortality, especially among children and the elderly. In Senegal, the endemic circulation of respiratory viruses other than influenza has been demonstrated. However, there is a paucity of data exploring the genetic diversity of these viruses based on whole-genome sequencing. In this study, we present data on the genetic diversity of respiratory viruses in children under 15 years old in Senegal, including an overview of the different pathogens detected. Between November 2022 and November 2023, we collected nasopharyngeal swabs from children seen in curative consultations for symptoms of acute respiratory infections. Of the 156 children included, 73.7% tested positive for at least one pathogen. The most frequently detected virus was rhinovirus (50.0%), followed by influenza B (41.6%) and human parainfluenza virus type 3 (7.6%). Combinations of rhinovirus/influenza B, human parainfluenza virus type 2/human parainfluenza virus type 4, and rhinovirus/influenza B/adenovirus were the most frequently identified. A statistically significant association was detected between some of the viruses detected. A high genetic diversity of respiratory viruses circulating in children was revealed. The strains were phylogenetically close to various strains circulating worldwide, suggesting a global circulation of respiratory viruses. Our study provides the first complete genome sequences of human parainfluenza viruses type 2, 3, 4 and human bocavirus from Senegal and thus contributes to the enrichment of international databases on sequences from Senegal and underlines the importance of sequencing in the dynamics of pathogen circulation.

Humans

Studies on the pathogenicity of human-origin parainfluenza virus in the brain of mice.

The pathogenicity of parainfluenza type 2 (croup-associated) virus known to cause infections of the respiratory tract in the early life of man was studied in the brain of mice. One- to 4-day-old sucklings and 4-week-old mice were inoculated intracerebrally with the virus. The virus multiplied in sucklings, but not in adults. Most mice inoculated intracerebrally with the virus appeared healthy. Histological examination showed minimum inflammatory changes, although moderate hydrocephalus developed in three of twenty-one sucklings by 6 weeks post-infection. Immunofluorescent study in sucklings showed viral antigens in ependymal lining cells and choroid plexus epithelium during the first two weeks, and parenchymal cells for more than two months. Virus specific antibody response was observed in adults, but not in sucklings. One interesting finding was that viral antigens persisted in six out of 11 suckling brains for one to two months.

Animals

A prospective study of respiratory infection in adult asthmatics and their normal spouses.

A prospective study of respiratory infections was performed in nineteen married asthmatics and their normal spouses who were examined at monthly intervals during a 1-year period. The colds described were associated with nasal symptoms, sore throat and usually malaise, fever, cough and hoarseness. The asthamtics reported a larger number of these symptomatic episodes than the non-asthmatics but significantly fewer of the episodes in the asthmatics were objectively confirmed by viral isolation or rise in serum titre of viral antibody. The frequency of respiratory infections was not influenced by the long term use of inhaled beclomethasone dipropionate and oral corticosteroid drugs. Less than 10% of the exacerbations of asthma were associated with respiratory infection. The disability resulting from respiratory infections in the asthmatics did not significantly exceed that in the non-asthmatics.

Adult

Interferon-producing capacity of human tonsil cells and properties of interferon produced by these cells.

Tonsils excised from human beings for chronic tonsillitis have been shown to be an accessible and sufficiently rich source of human lymphocytes. Tonsil cells produced interferon as intensively as blood leukocytes and the properties of this interferon were similar to those of leukocyte interferon. The optimal conditions for interferon production by tonsil cells were established.

Adenoviridae

Repertoire of antiviral antibodies expressed by somatic cell hybrids.

Fusion between P3 x 63 Ag8 mouse myeloma cells and spleen cells from BALB/c mice immunized with influenza type A or B or parainfluenza type 1 virus generated reproducibly antiviral antibody-producing somatic cell hybrids (hybridomas). Eleven hybridomas derived from spleen cells of mice immunized with influenza type A virus were directed against the viral hemagglutinin, one reacted with a host component derived from chickens, and one expressed a specificity not further characterized. The hybridoma antibodies tended to be highly specific for the hemagglutinin of the immunizing virus and seemed to express the same repertoire of strain-specific antibody reactivities as splenic precursor B cells, they did not express any of the frequently occurring crossreactive anti-hemagglutinin specificities. Hybridomas producing crossreactive antibodies against hemagglutinin could be obtained if priming and boosting virus were heterologous.

Animals

Contamination of primary embryonic bovine kidney cell cultures with parainfluenza type 2 simian virus 5 and infectious bovine rhinotracheitis virus.

Two different viruses were isolated from bovine embryonic cell cultures after two subcultures from the primary cells. One virus was identified as parainfluenza type 2 simian virus 5 (SV-5), and the other was identified as infectious bovine rhinotracheitis virus. Six months later, stock cultures of pig kidney (PK-15) cells were found to be contaminated with SV-5 virus. We believe that the source of the SV-5 virus in the bovine cells was a cross-contamination from monkey kidneys during preparation of the cell cultures. The infectious bovine rhinotracheitis contamination was probably of endogenous origin. The bovine embryonic cell cultures were the probable source of contamination of the PK-15 cells with SV-5 virus.

Animals

[Variants of parainfluenza type 2 viruses].

A comparative study of the antigenic and biological properties of parainfluenza type 2 viruses revealed the existence of two variants among them. The first variant includes strains isolated up to 1965 inclusive, the 2nd those isolated in 1966--1974. The strains of the 2nd variant are characterized by poor interaction with antibody in immune sera to the reference virus which appears to be due to a loss of one of the antigens in them. Besides, they have comparatively low immunogenicity and the hemagglutinating activity and higher sensitivity to inhibitors. The paper emphasized the necessity of using immune sera to strains isolated in recent years, in addition to reference sera, for identification of new isolated of parainfluenza type 2 virus.

Genetic Variation