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Page 339<br />

3. Pearl LH, Blundell TL. The active sites of aspartic proteinases. FEBS Lett 1984; 174:96–101.<br />

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graphics modeling of human renin. FEBS Lett 1984; 174:102–111.<br />

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Angiotensin System. New York: Plenum.<br />

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38:2768–2773.<br />

8. Cooper JB, Bailey D. A structural comparison of 21 inhibitor complexes of the aspartic proteinase<br />

from Endothia parasitica. Protein Science 1994, 3:2129–2143.<br />

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Blundell TL, Valler MJ, Norey CG, Kay J, Boger J, Dunn BM, Leckie BJ, Jones DM, Atrash B, Hallett<br />

A, Szelke M. High resolution X-ray analyses of renin inhibitor-aspartic proteinase complexes. Nature<br />

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Plattner JJ. New inhibitors of human renin that contain novel replacements. Examination of the P 1 site. J<br />

Med Chem 1988; 31:532–539.<br />

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inhibitors of human renin. Nature 1982; 299:555–557.<br />

13. Boger J. Renin inhibitors. <strong>Design</strong> of angiotensin transition state analogues containing statine. In:<br />

Kostka V. ed. Aspartic Proteinases and Their Inhibitors. Berlin: Walter de Gruyter, 1985:401–420.<br />

14. Kokubu T, Hiwada K, Murakami E, Imamura Y, Matsueda R, Yabe Y, Koike H, Iijima Y. Highly<br />

potent and specific inhibitors of human renin. Hypertension 1985; 7 (suppl.1):8–11.<br />

15. Kokubu T, Hiwada K, Nagae A, Murakami E, Morisawa Y, Yabe Y, Koike H, Iijima Y. Statine<br />

containing dipeptide and tripeptide inhibitors of human renin. Hypertension (Suppl.II) 1986; 8:1–5.<br />

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