[On the incorporation of aspartic acid into peganin].
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Evidence is reviewed that three and possibly four peptides formed from renin substrate have biological activity that merits their recognition as agonists. The decepeptide angiotensin I affects sites in the central nervous system and adrenal medulla. The octapeptide angiotensin II affects vascular and cardiac sites that mediate acute pressor responses, and also causes direct feedback inhibition of renin release. The heptapeptide (des-asp-1)-angiotensin II ("angiotensin III") stimulates aldosterone release.. It may exert its effects intracellularly at the adrenal glomerulosa and other sites. The fourth candidate is the (des-asp-1)-angiotensin I nonapeptide, but nothing is known of its activity or circulating levels. This formulation of the angiotensin reaction sequence and the effects of its individual congeners suggests several experiments. It also permits simple explanations for previously confusing data, such as the inability of immunization and anti-angiotensin II to prevent aldosterone responses, and the paradoxical preservation of adrenal responsiveness in Bartter's syndrome.
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Previous studies of adhesion mediated by the central cell-binding domain of fibronectin suggest that additional polypeptide information besides the Arg-Gly-Asp sequence is required for full activity. We analyzed this putative second, synergistic region of fibronectin more extensively by deletion analysis and oligonucleotide-based site-directed mutagenesis. Resulting mutated fusion proteins expressed using lambda gt11 were assayed for baby hamster kidney fibroblast cell spreading activity. Deletion mutants truncating from the amino terminus showed a decrease of activity in two apparently discrete steps. Complementary studies using a series of overlapped internal deletions designed to retain the repetitive fibronectin structure also indicated that two distinct peptide regions besides the RGD sequence were necessary for full activity. Removal of the carboxyl-terminal region resulted in the greatest loss of activity (greater than or equal to 20- versus 3-5-fold). Very similar results were obtained with HT-1080 cells dependent on the alpha 5 beta 1 integrin receptor for adhesion to fibronectin. An anti-fibronectin monoclonal antibody that inhibits cell adhesion was found to bind to the carboxyl-terminal functional region, and a point mutation caused specific loss of its epitope. These studies reveal unexpected complexity in the organization of these functional regions, which contrasts with adhesion models based only on simple, short peptide recognition sequences.
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