Tissue distribution of ACE2 protein, the functional receptor for SARS coronavirus. A first step in understanding SARS pathogenesis

Распределение белка ACE2, функционального рецептора коронавируса SARS. Первый шаг к пониманию патогенеза SARS
Wim Timens, Harry van Goor, Inge Hamming, MLC Bulthuis, A. Titia Lely, G. Navis
2004-05-07

ACE2 proteinSARS-CoV receptoralveolar epithelial cellsenterocytestissue distribution
Severe acute respiratory syndrome (SARS) is an acute infectious disease that spreads mainly via the respiratory route. A distinct coronavirus (SARS-CoV) has been identified as the aetiological agent of SARS. Recently, a metallopeptidase named angiotensin-converting enzyme 2 (ACE2) has been identified as the functional receptor for SARS-CoV. Although ACE2 mRNA is known to be present in virtually all organs, its protein expression is largely unknown. Since identifying the possible route of infection has major implications for understanding the pathogenesis and future treatment strategies for SARS, the present study investigated the localization of ACE2 protein in various human organs (oral and nasal mucosa, nasopharynx, lung, stomach, small intestine, colon, skin, lymph nodes, thymus, bone marrow, spleen, liver, kidney, and brain). The most remarkable finding was the surface expression of ACE2 protein on lung alveolar epithelial cells and enterocytes of the small intestine. Furthermore, ACE2 was present in arterial and venous endothelial cells and arterial smooth muscle cells in all organs studied. In conclusion, ACE2 is abundantly present in humans in the epithelia of the lung and small intestine, which might provide possible routes of entry for the SARS-CoV. This epithelial expression, together with the presence of ACE2 in vascular endothelium, also provides a first step in understanding the pathogenesis of the main SARS disease manifestations.
1
ACE2 expression in respiratory and intestinal epithelia, together with vascular localization, offers a mechanistic basis for SARS-CoV entry and major disease manifestations.
2
ACE2 was detected in arterial and venous endothelial cells and arterial smooth muscle cells across all examined organs.
3
ACE2 was prominently expressed on lung alveolar epithelial cells and small-intestinal enterocytes, identifying potential epithelial entry sites for SARS-CoV.
4
The study mapped ACE2 protein localization across multiple human organs, addressing protein expression previously unknown despite widespread ACE2 mRNA.

ACE2 protein distribution in various human organs, particularly lung and small-intestinal tissues

Localization and epithelial and vascular expression patterns of ACE2 protein relevant to SARS-CoV entry and pathogenesis

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2004-05-07
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Authors
Wim Timens
Harry van Goor
Inge Hamming
MLC Bulthuis
A. Titia Lely
G. Navis
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