Prions jump species barrier

Nature ◽  
2008 ◽  
Author(s):  
Amber Dance
Keyword(s):  
2004 ◽  
Vol 2 (4) ◽  
pp. 270-270
Author(s):  
Jane Saunders
Keyword(s):  

2021 ◽  
Vol 5 ◽  
pp. 15-20
Author(s):  
Muhammad Mubeen Sajjad ◽  
Majeeda Rasheed

H9N2 avian influenza outbreaks have caused great economic losses to the poultry industry in recent decades due to a decrease of egg production, high morbidity, and mortality. Due to different antigenic variants, Influenza virus has become problematical because it has the ability to cross the species barrier. As it is highly pathogenic so its diagnosis and vaccines are of high importance. Hemagglutination inhibition (HI) test is mostly used for subtyping and detection of antibody titer against the virus. Furthermore, its continuous mutations in the HA gene transforms AIV subtype H9N2 (a low pathogenic subtype) into high pathogenic virus subtypes like H5N2 and H7N7 that may have pandemic potential. Thus, it is necessary to identify various antigenic variants of Influenza virus, so it is direly needed to study the HA gene, its attachment to host receptors, the release of genetic material and pathogenicity. In the present study, virus samples from poultry were isolated. Both serological and molecular confirmation was done for 100 samples collected from the different area. They were properly labeled and prepared for the process of egg inoculation in embryonated eggs. The virus was grown in amnioallantoic membrane of embryonated eggs and harvested fluid is then proceeded for confirmatory testing. Hemagglutination and Hemagglutination inhibition testing was done. RNA was extracted by the kit method and cDNA was synthesized. Reverse transcriptase (RTPCR) was performed using specific primer sets and then the PCR product was run on agarose gel. The bands obtained were sent for sequencing.


PLoS Biology ◽  
2011 ◽  
Vol 9 (11) ◽  
pp. e1001201 ◽  
Author(s):  
Robert Shields

Author(s):  
Karen Emmerman

Food Empowerment Project (F.E.P.) is a vegan food justice nonprofit in northern California. We focus on making a more just and sustainable food system for everyone involved. Since injustice in the food system crosses the species barrier, we work to connect the dots between the exploitation of human and nonhuman animals. We focus our efforts on four main areas: ending the use of animals in the food system, improving access to healthy foods in Black, Brown, and low-income communities, exposing the worst forms of child labor (including slavery) in the chocolate industry, and advocating for farmworker rights. These seemingly disparate areas have much in common: they are interlocking forms of oppres­sion, marginalization, and domination in the food system. We recognize that the intersecting nature of oppression necessitates a nuanced response. For example, as an organization working on both farm­worker justice and food apartheid, we cannot advocate for lowering the price of food as this would negatively impact produce workers who already suffer grave systemic injustice. Instead, we advocate for equality of access and living wages for everyone.[1] In this piece, we focus on our approach to the lack of access to healthy foods, and specifically our community-based efforts in Vallejo, California.


2021 ◽  
Vol 17 (7) ◽  
pp. e1009765
Author(s):  
Alyssa J. Block ◽  
Ronald A. Shikiya ◽  
Thomas E. Eckland ◽  
Anthony E. Kincaid ◽  
Ryan W. Walters ◽  
...  

Prions are comprised solely of PrPSc, the misfolded self-propagating conformation of the cellular protein, PrPC. Synthetic prions are generated in vitro from minimal components and cause bona fide prion disease in animals. It is unknown, however, if synthetic prions can cross the species barrier following interspecies transmission. To investigate this, we inoculated Syrian hamsters with murine synthetic prions. We found that all the animals inoculated with murine synthetic prions developed prion disease characterized by a striking uniformity of clinical onset and signs of disease. Serial intraspecies transmission resulted in a rapid adaptation to hamsters. During the adaptation process, PrPSc electrophoretic migration, glycoform ratios, conformational stability and biological activity as measured by protein misfolding cyclic amplification remained constant. Interestingly, the strain that emerged shares a strikingly similar transmission history, incubation period, clinical course of disease, pathology and biochemical and biological features of PrPSc with 139H, a hamster adapted form of the murine strain 139A. Combined, these data suggest that murine synthetic prions are comprised of bona fide PrPSc with 139A-like strain properties that efficiently crosses the species barrier and rapidly adapts to hamsters resulting in the emergence of a single strain. The efficiency and specificity of interspecies transmission of murine synthetic prions to hamsters, with relevance to brain derived prions, could be a useful model for identification of structure function relationships between PrPSc and PrPC from different species.


2020 ◽  
Author(s):  
G. Ozan Bozdag ◽  
Jasmine Ono ◽  
Jai A. Denton ◽  
Emre Karakoc ◽  
Neil Hunter ◽  
...  
Keyword(s):  

Author(s):  
Miura H ◽  
◽  
Ozeki Y ◽  
Omatsu T ◽  
Katayama Y ◽  
...  

Avian Influenza Viruses (AIVs) are harbored by wild waterfowl as a natural host, and there is a species barrier restricting virus transmission from birds to mammals, including humans. However, it has been reported that, through genetic mutations, AIVs occasionally infect mammals and acquire high pathogenicity. The Amino Acid (aa) substitution of glutamic acid to lysine at position 627 (E627K) in polymerase basic protein 2 (PB2) is one of the wellknown factors underlying mammalian adaptation. Although this substitution was previously observed in mammalian-adapted H5, H7, and H9 AIV subtypes, the impact of this mutation on the mammalian adaptation of other AIV subtypes is not fully verified. Here, we isolated the low pathogenic AIV subtype H6N6 from a wild bird fecal sample in Tokachi Subprefecture, Hokkaido, Japan. We passaged this H6N6 subtype in BALB/c mice four times and acquired the mouse-adapted virus. Whole-genome sequence analysis showed that the adapted virus had only one aa substitution (E627K) in PB2. The adapted virus-inoculated mice tended to show increased weight loss and mortality compared with the original virus-inoculated mice. The viral titer in the lungs of the adapted virus-inoculated mice was significantly higher than that of the original virus-inoculated mice. Additionally, the virus isolated from the lung of the original virus-inoculated mice with serious symptoms harbored the E627K substitution. Our findings indicate the possibility that the PB2 E627K substitution in H6N6 subtype AIV rapidly appears in mammalian hosts and contributes to the enhanced pathogenicity of this virus.


2020 ◽  
Vol 26 (6) ◽  
pp. 1130-1139 ◽  
Author(s):  
Alba Marín-Moreno ◽  
Alvina Huor ◽  
Juan Carlos Espinosa ◽  
Jean Yves Douet ◽  
Patricia Aguilar-Calvo ◽  
...  

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