1c1v

From Proteopedia

(Difference between revisions)
Jump to: navigation, search
Line 4: Line 4:
==Overview==
==Overview==
-
Many serine proteases are targets for therapeutic intervention because, they often play key roles in disease. Small molecule inhibitors of serine, proteases with high affinity are especially interesting as they could be, used as scaffolds from which to develop drugs selective for protease, targets. One such inhibitor is bis(5-amidino-2-benzimidazolyl)methane, (BABIM), standing out as the best inhibitor of trypsin (by a factor of, over 100) in a series of over 60 relatively closely related analogues. By, probing the structural basis of inhibition, we discovered, using, crystallographic methods, a new mode of high-affinity binding in which a, Zn2+ ion is tetrahedrally coordinated between two chelating nitrogens of, BABIM and two active site residues, His57 and Ser 195. Zn2+, at, subphysiological levels, enhances inhibition by over 10(3)-fold. The, distinct Zn2+ coordination geometry implies a strong dependence of, affinity on substituents. This unique structural paradigm has enabled, development of potent, highly selective, Zn2+-dependent inhibitors of, several therapeutically important serine proteases, using a, physiologically ubiquitous metal ion.
+
Many serine proteases are targets for therapeutic intervention because they often play key roles in disease. Small molecule inhibitors of serine proteases with high affinity are especially interesting as they could be used as scaffolds from which to develop drugs selective for protease targets. One such inhibitor is bis(5-amidino-2-benzimidazolyl)methane (BABIM), standing out as the best inhibitor of trypsin (by a factor of over 100) in a series of over 60 relatively closely related analogues. By probing the structural basis of inhibition, we discovered, using crystallographic methods, a new mode of high-affinity binding in which a Zn2+ ion is tetrahedrally coordinated between two chelating nitrogens of BABIM and two active site residues, His57 and Ser 195. Zn2+, at subphysiological levels, enhances inhibition by over 10(3)-fold. The distinct Zn2+ coordination geometry implies a strong dependence of affinity on substituents. This unique structural paradigm has enabled development of potent, highly selective, Zn2+-dependent inhibitors of several therapeutically important serine proteases, using a physiologically ubiquitous metal ion.
==Disease==
==Disease==
Line 17: Line 17:
[[Category: Protein complex]]
[[Category: Protein complex]]
[[Category: Thrombin]]
[[Category: Thrombin]]
-
[[Category: Katz, B.A.]]
+
[[Category: Katz, B A.]]
[[Category: Luong, C.]]
[[Category: Luong, C.]]
[[Category: BAB]]
[[Category: BAB]]
Line 27: Line 27:
[[Category: zn(ii)-mediated serine protease inhibitors]]
[[Category: zn(ii)-mediated serine protease inhibitors]]
-
''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Fri Feb 15 15:34:07 2008''
+
''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Thu Feb 21 12:01:31 2008''

Revision as of 10:01, 21 February 2008


1c1v, resolution 1.98Å

Drag the structure with the mouse to rotate

RECRUITING ZINC TO MEDIATE POTENT, SPECIFIC INHIBITION OF SERINE PROTEASES

Contents

Overview

Many serine proteases are targets for therapeutic intervention because they often play key roles in disease. Small molecule inhibitors of serine proteases with high affinity are especially interesting as they could be used as scaffolds from which to develop drugs selective for protease targets. One such inhibitor is bis(5-amidino-2-benzimidazolyl)methane (BABIM), standing out as the best inhibitor of trypsin (by a factor of over 100) in a series of over 60 relatively closely related analogues. By probing the structural basis of inhibition, we discovered, using crystallographic methods, a new mode of high-affinity binding in which a Zn2+ ion is tetrahedrally coordinated between two chelating nitrogens of BABIM and two active site residues, His57 and Ser 195. Zn2+, at subphysiological levels, enhances inhibition by over 10(3)-fold. The distinct Zn2+ coordination geometry implies a strong dependence of affinity on substituents. This unique structural paradigm has enabled development of potent, highly selective, Zn2+-dependent inhibitors of several therapeutically important serine proteases, using a physiologically ubiquitous metal ion.

Disease

Known diseases associated with this structure: Dysprothrombinemia OMIM:[176930], Hyperprothrombinemia OMIM:[176930], Hypoprothrombinemia OMIM:[176930]

About this Structure

1C1V is a Protein complex structure of sequences from Homo sapiens with , and as ligands. Active as Thrombin, with EC number 3.4.21.5 Full crystallographic information is available from OCA.

Reference

Design of potent selective zinc-mediated serine protease inhibitors., Katz BA, Clark JM, Finer-Moore JS, Jenkins TE, Johnson CR, Ross MJ, Luong C, Moore WR, Stroud RM, Nature. 1998 Feb 5;391(6667):608-12. PMID:9468142

Page seeded by OCA on Thu Feb 21 12:01:31 2008

Proteopedia Page Contributors and Editors (what is this?)

OCA

Personal tools