Functional Analysis of a Mutation Occurring between the Two In-frame AUG Codons of Human Angiotensinogen
Angiotensinogen (ANG) is the specific substrate of the renin-angiotensin system, a major participant in blood pressure control. We have identified a natural mutation at the â30 amino acid position of the angiotensinogen signal peptide, in which an arginine is replaced by a proline (Râ30P). Heter...
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Veröffentlicht in: | The Journal of biological chemistry 1999-12, Vol.274 (50), p.35749-35755 |
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Zusammenfassung: | Angiotensinogen (ANG) is the specific substrate of the renin-angiotensin system, a major participant in blood pressure control.
We have identified a natural mutation at the â30 amino acid position of the angiotensinogen signal peptide, in which an arginine
is replaced by a proline (Râ30P). Heterozygous individuals with Râ30P showed a tendency to lowered plasma angiotensinogen
level (1563 ng of ANG I/ml (range 1129â1941)) compared with normal individuals in the family (1892 ng of ANG I/ml (range 1603â2072)).
Human angiotensinogen mRNA has two in-phase translation initiation codons (AUG) starting upstream 39 and 66 nucleotides from
the cap site. Râ30P occurs in a cluster of basic residues adjacent to the first AUG codon that may affect intracellular sorting
of the nascent protein. Pulse-chase experiments in transiently transfected cultured cells revealed that the Râ30P mutation
was associated with reduced amounts of both intra- and extracellular protein. In a cell-free system, we found that two forms
of native angiotensinogen were generated by alternative initiation of translation at either AUG codon. Alteration of either
the first or second AUG codons abolished the synthesis of the longer and the shorter form of native angiotensinogen, respectively.
Furthermore, the rate of secretion of the shorter form was lower than that of the longer form. By transplanting angiotensinogen
signal peptide onto green fluorescence protein, however, we found that both forms of the signal peptide could target green
fluorescence protein, normally localized in the cytoplasm, to the secretory pathway. Although the Râ30P mutation may not affect
intracellular sorting of angiotensinogen in a qualitative manner, it leads to a quantitative reduction in the net secretion
of mature angiotensinogen through decreased translocation or increased residence time in the endoplasmic reticulum. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.274.50.35749 |