Key result
Recombinant murine ACE2 is substantially less potent in transforming Ang 1-10 to Ang 1-9 compared to recombinant human ACE2 in vitro.
Species-specific differences exist in ACE2 substrate specificities, notably in Ang 1-10 to Ang 1-9 conversion, highlighting potential functional differences in the alternative RAS axis between humans and mice.
Species differences in recombinant ACE2 activity urge caution in murine-to-human translation; leaves open questions on alternative RAS axis conservation across species.
Angiotensin-converting enzyme 2 (ACE2) is a monocarboxypeptidase of the renin-angiotensin-system (RAS) which is known to cleave several substrates among vasoactive peptides. Its preferred substrate is Angiotensin II, which is tightly involved in the regulation of important physiological functions including fluid homeostasis and blood pressure. Ang 1-7, the main enzymatic product of ACE2, became increasingly important in the literature in recent years, as it was reported to counteract hypertensive and fibrotic actions of Angiotensin II via the MAS receptor. The functional connection of ACE2, Ang 1-7, and the MAS receptor is also referred to as the alternative axis of the RAS. In the present paper, we describe the recombinant expression and purification of human and murine ACE2 (rhACE2 and rmACE2). Furthermore, we determined the conversion rates of rhACE2 and rmACE2 for different natural peptide substrates in plasma samples and discovered species-specific differences in substrate specificities, probably leading to functional differences in the alternative axis of the RAS. In particular, conversion rates of Ang 1-10 to Ang 1-9 were found to be substantially different when applying rhACE2 or rmACE2 in vitro. In contrast to rhACE2, rm ACE2 is substantially less potent in transformation of Ang 1-10 to Ang 1-9.
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Poglitsch et al. (2012) studied this question. Recombinant human and murine ACE2 was evaluated on Conversion rates of natural peptide substrates (Ang 1-10 to Ang 1-9). Recombinant murine ACE2 is substantially less potent in transforming Ang 1-10 to Ang 1-9 compared to recombinant human ACE2 in vitro.
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