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Article ; Online: COVID19 and SARSCoV2 host cell entry mediators: Expression profiling of TMRSS4 in health and disease.

Katopodis, Periklis / Kerslake, Rachel / Davies, Julie / Randeva, Harpal S / Chatha, Kamaljit / Hall, Marcia / Spandidos, Demetrios A / Anikin, Vladimir / Polychronis, Andreas / Robertus, Jan L / Kyrou, Ioannis / Karteris, Emmanouil

International journal of molecular medicine

2021  Volume 47, Issue 4

Abstract: ... for the ongoing COVID19 pandemic, enters its host cells primarily via the binding of the SARSCoV2 spike (S ... activate the SARSCoV2 S proteins, and enhance the viral infection of human small intestinal enterocytes ... proteins to the angiotensin‑converting enzyme 2 (ACE2). A number of other cell entry mediators have also ...

Abstract Severe acute respiratory syndrome (SARS) coronavirus‑2 (SARSCoV2), the causative viral agent for the ongoing COVID19 pandemic, enters its host cells primarily via the binding of the SARSCoV2 spike (S) proteins to the angiotensin‑converting enzyme 2 (ACE2). A number of other cell entry mediators have also been identified, including neuropilin‑1 (NRP1) and transmembrane protease serine 2 (TMPRSS2). More recently, it has been demonstrated that transmembrane protease serine 4 (TMPRSS4) along with TMPRSS2 activate the SARSCoV2 S proteins, and enhance the viral infection of human small intestinal enterocytes. To date, a systematic analysis of TMPRSS4 in health and disease is lacking. In the present study, using
MeSH term(s) Brain/enzymology ; COVID-19/enzymology ; COVID-19/genetics ; COVID-19/virology ; Central Nervous System/enzymology ; Computer Simulation ; Databases, Genetic ; Female ; Gastrointestinal Tract/enzymology ; Gene Expression Profiling ; Host Microbial Interactions/genetics ; Host Microbial Interactions/physiology ; Humans ; Male ; Membrane Proteins/genetics ; Membrane Proteins/physiology ; Neoplasms/enzymology ; Neoplasms/genetics ; Pandemics ; SARS-CoV-2/pathogenicity ; SARS-CoV-2/physiology ; Serine Endopeptidases/genetics ; Serine Endopeptidases/physiology ; Virus Internalization
Chemical Substances Membrane Proteins ; Serine Endopeptidases (EC 3.4.21.-) ; TMPRSS4 protein, human (EC 3.4.21.-)
Language English
Publishing date 2021-03-02
Publishing country Greece
Document type Journal Article
ZDB-ID 1444428-8
ISSN 1791-244X ; 1107-3756
ISSN (online) 1791-244X
ISSN 1107-3756
DOI 10.3892/ijmm.2021.4897
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ab Jg. 2022: Lesesaal (EG)
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