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Apr 8, 2020
2:12:29pm
WorfoSAUR All-American
So here's the paper linking Covid to heme metabolism

I'm no cellular biologist but from what I understand, this is an in silico modeling experiment showing that viral proteins can interact and affect oxygen/hemoglobin metabolism INSIDE red blood cells. Some quick issues — in silico doesn't always translate over to in vivo and coronavirus enters cells via the ACE2 receptor protein (in layman's terms, it has a key that only works in the hole created by ACE2). The ACE2 receptor is found in the lungs, arteries, heart, kidneys, and intestines. Don't think it is found on RBCs so although coronavirus can affect the hemoglobin on a computer model, how would the virus get into the RBC in the first place?

edit: oh, i see ldssl already shared this earlier today. couldnt see it on thread linked posts off the original thread.

https://chemrxiv.org/articles/COVID-19_Disease_ORF8_and_Surface_Glycoprotein_Inhibit_Heme_Metabolism_by_Binding_to_Porphyrin/11938173

The novel coronavirus pneumonia (COVID-19) is an infectious acute respiratory infection caused by the novel coronavirus. The virus is a positive-strand RNA virus with high homology to bat coronavirus. In this study, conserved domain analysis, homology modeling, and molecular docking were used to compare the biological roles of certain proteins of the novel coronavirus. The results showed the ORF8 and surface glycoprotein could bind to the porphyrin, respectively. At the same time, orf1ab, ORF10, and ORF3a proteins could coordinate attack the heme on the 1-beta chain of hemoglobin to dissociate the iron to form the porphyrin. The attack will cause less and less hemoglobin that can carry oxygen and carbon dioxide. The lung cells have extremely intense poisoning and inflammatory due to the inability to exchange carbon dioxide and oxygen frequently, which eventually results in ground-glass-like lung images. The mechanism also interfered with the normal heme anabolic pathway of the human body, is expected to result in human disease. According to the validation analysis of these finds, chloroquine could prevent orf1ab, ORF3a, and ORF10 to attack the heme to form the porphyrin, and inhibit the binding of ORF8 and surface glycoproteins to porphyrins to a certain extent, effectively relieve the symptoms of respiratory distress. Favipiravir could inhibit the envelope protein and ORF7a protein bind to porphyrin, prevent the virus from entering host cells, and catching free porphyrins. Because the novel coronavirus is dependent on porphyrins, it may originate from an ancient virus. Therefore, this research is of high value to contemporary biological experiments, disease prevention, and clinical treatment.

This message has been modified
Originally posted on Apr 8, 2020 at 2:12:29pm
Message modified by WorfoSAUR on Apr 8, 2020 at 2:36:03pm
WorfoSAUR
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WorfoSAUR
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