Protease inhibitor (biology)

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In biology and biochemistry, protease inhibitors, or antiproteases,[1] are molecules that inhibit the function of proteases (enzymes that aid the breakdown of proteins). Many naturally occurring protease inhibitors are proteins.[2]

In medicine, protease inhibitor is often used interchangeably with alpha 1-antitrypsin (A1AT, which is abbreviated PI for this reason).[3] A1AT is indeed the protease inhibitor most often involved in disease, namely in alpha-1 antitrypsin deficiency.

Classification

Protease inhibitors may be classified either by the type of protease they inhibit, or by their mechanism of action. In 2004 Rawlings and colleagues introduced a classification of protease inhibitors based on similarities detectable at the level of amino acid sequence.[4] This classification initially identified 48 families of inhibitors that could be grouped into 26 related superfamily (or clans) by their structure. According to the MEROPS database there are now 81 families of inhibitors. These families are named with an I followed by a number, for example, I14 contains hirudin-like inhibitors.

By protease

Classes of proteases are:

By mechanism

Classes of inhibitor mechanisms of action are:

Families

Inhibitor I4

This is a family of protease suicide inhibitors called the serpins. It contains inhibitors of multiple cysteine and serine protease families. Their mechanism of action relies on undergoing a large conformational change which inactivates their target's catalytic triad.

Inhibitor I9

Quick facts Peptidase inhibitor I9, Identifiers ...
Peptidase inhibitor I9
subtilisin bpn' prosegment (77 residues) complexed with a mutant subtilisin bpn' (266 residues). crystal ph 4.6. crystallization temperature 20 c diffraction temperature-160 c
Identifiers
SymbolInhibitor_I9
PfamPF05922
InterProIPR010259
MEROPSI9
SCOP21gns / SCOPe / SUPFAM
Available protein structures:
PDB  IPR010259 PF05922 (ECOD; PDBsum)  
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Proteinase propeptide inhibitors (sometimes referred to as activation peptides) are responsible for the modulation of folding and activity of the peptidase pro-enzyme or zymogen. The pro-segment docks into the enzyme, shielding the substrate binding site, thereby promoting inhibition of the enzyme. Several such propeptides share a similar topology, despite often low sequence identities.[5][6] The propeptide region has an open-sandwich antiparallel-alpha/antiparallel-beta fold, with two alpha-helices and four beta-strands with a (beta/alpha/beta)x2 topology. The peptidase inhibitor I9 family contains the propeptide domain at the N-terminus of peptidases belonging to MEROPS family S8A, subtilisins. The propeptide is removed by proteolytic cleavage; removal activating the enzyme.

Inhibitor I10

Quick facts Serine endopeptidase inhibitors, Identifiers ...
Serine endopeptidase inhibitors
solution structure of marinostatin, a protease inhibitor, containing two ester linkages
Identifiers
SymbolInhibitor_I10
PfamPF12559
InterProIPR022217
Available protein structures:
PDB  IPR022217 PF12559 (ECOD; PDBsum)  
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This family includes both microviridins and marinostatins. It seems likely that in both cases it is the C-terminus which becomes the active inhibitor after post-translational modifications of the full length, pre-peptide. It is the ester linkages within the key, 12-residue region that circularise the molecule giving it its inhibitory conformation.

Inhibitor I24

Quick facts PinA peptidase inhibitor, Identifiers ...
PinA peptidase inhibitor
Identifiers
SymbolInhibitor_I24
PfamPF10465
InterProIPR019506
MEROPSI24
Available protein structures:
PDB  IPR019506 PF10465 (ECOD; PDBsum)  
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This family includes PinA, which inhibits the endopeptidase La. It binds to the La homotetramer but does not interfere with the ATP binding site or the active site of La.

Inhibitor I29

Quick facts Cathepsin propeptide inhibitor domain (I29), Identifiers ...
Cathepsin propeptide inhibitor domain (I29)
crystal structure of a cysteine protease proform
Identifiers
SymbolInhibitor_I29
PfamPF08246
InterProIPR013201
Available protein structures:
PDB  IPR013201 PF08246 (ECOD; PDBsum)  
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The inhibitor I29 domain, which belongs to MEROPS peptidase inhibitor family I29, is found at the N-terminus of a variety of peptidase precursors that belong to MEROPS peptidase subfamily C1A; these include cathepsin L, papain, and procaricain.[7] It forms an alpha-helical domain that runs through the substrate-binding site, preventing access. Removal of this region by proteolytic cleavage results in activation of the enzyme. This domain is also found, in one or more copies, in a variety of cysteine peptidase inhibitors such as salarin.[8]

Inhibitor I34

Quick facts Saccharopepsin inhibitor I34, Identifiers ...
Saccharopepsin inhibitor I34
the structure of proteinase a complexed with an ia3 mutant inhibitor
Identifiers
SymbolInhibitor_I34
PfamPF10466
InterProIPR019507
MEROPSI34
Available protein structures:
PDB  IPR019507 PF10466 (ECOD; PDBsum)  
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The saccharopepsin inhibitor I34 is highly specific for the aspartic peptidase saccharopepsin. In the absence of saccharopepsin it is largely unstructured,[9] but in its presence, the inhibitor undergoes a conformational change forming an almost perfect alpha-helix from Asn2 to Met32 in the active site cleft of the peptidase.

Inhibitor I36

Quick facts Peptidase inhibitor family I36, Identifiers ...
Peptidase inhibitor family I36
the 3d structure of the streptomyces metalloproteinase inhibitor, smpi, isolated from streptomyces nigrescens tk-23, nmr, minimized average structure
Identifiers
SymbolInhibitor_I36
PfamPF03995
Pfam clanCL0333
InterProIPR007141
MEROPSI36
SCOP21bhu / SCOPe / SUPFAM
Available protein structures:
PDB  IPR007141 PF03995 (ECOD; PDBsum)  
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The peptidase inhibitor family I36 domain is only found in a small number of proteins restricted to Streptomyces species. All have four conserved cysteines that probably form two disulphide bonds. One of these proteins from Streptomyces nigrescens, is the well characterised metalloproteinase inhibitor SMPI.[10][11]

The structure of SMPI has been determined. It has 102 amino acid residues with two disulphide bridges and specifically inhibits metalloproteinases such as thermolysin, which belongs to MEROPS peptidase family M4. SMPI is composed of two beta-sheets, each consisting of four antiparallel beta-strands. The structure can be considered as two Greek key motifs with 2-fold internal symmetry, a Greek key beta-barrel. One unique structural feature found in SMPI is in its extension between the first and second strands of the second Greek key motif which is known to be involved in the inhibitory activity of SMPI. In the absence of sequence similarity, the SMPI structure shows clear similarity to both domains of the eye lens crystallins, both domains of the calcium sensor protein-S, as well as the single-domain yeast killer toxin. The yeast killer toxin structure was thought to be a precursor of the two-domain beta gamma-crystallin proteins, because of its structural similarity to each domain of the beta gamma-crystallins. SMPI thus provides another example of a single-domain protein structure that corresponds to the ancestral fold from which the two-domain proteins in the beta gamma-crystallin superfamily are believed to have evolved.[12]

Inhibitor I42

Quick facts Chagasin family peptidase inhibitor I42, Identifiers ...
Chagasin family peptidase inhibitor I42
solution structure of the trypanosoma cruzi cysteine protease inhibitor chagasin
Identifiers
SymbolInhibitor_I42
PfamPF09394
InterProIPR018990
MEROPSI42
Available protein structures:
PDB  IPR018990 PF09394 (ECOD; PDBsum)  
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Inhibitor family I42 includes chagasin, a reversible inhibitor of papain-like cysteine proteases.[13] Chagasin has a beta-barrel structure, which is a unique variant of the immunoglobulin fold with homology to human CD8alpha.[14][15]

Inhibitor I48

Quick facts Peptidase inhibitor clitocypin, Identifiers ...
Peptidase inhibitor clitocypin
Identifiers
SymbolInhibitor_I48
PfamPF10467
InterProIPR019508
MEROPSI48
Available protein structures:
PDB  IPR019508 PF10467 (ECOD; PDBsum)  
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Inhibitor family I48 includes clitocypin, which binds and inhibits cysteine proteinases. It has no similarity to any other known cysteine proteinase inhibitors but bears some similarity to a lectin-like family of proteins from mushrooms.[16]

Inhibitor I53

Quick facts Thrombin inhibitor Madanin, Identifiers ...
Thrombin inhibitor Madanin
Identifiers
SymbolInhibitor_I53
PfamPF11714
InterProIPR021716
MEROPSI53
Available protein structures:
PDB  IPR021716 PF11714 (ECOD; PDBsum)  
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Members of this family are the peptidase inhibitor madanin proteins. These proteins were isolated from tick saliva.[17]

Inhibitor I67

Quick facts Bromelain inhibitor VI, Identifiers ...
Bromelain inhibitor VI
nmr structure of bromelain inhibitor vi from pineapple stem
Identifiers
SymbolInhibitor_I67
PfamPF11405
InterProIPR022713
MEROPSI67
Available protein structures:
PDB  IPR022713 PF11405 (ECOD; PDBsum)  
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Bromelain inhibitor VI, in the Inhibitor I67 family, is a double-chain inhibitor consisting of an 11-residue and a 41-residue chain.

Inhibitor I68

Quick facts Carboxypeptidase inhibitor I68, Identifiers ...
Carboxypeptidase inhibitor I68
crystal structure of the tick carboxypeptidase inhibitor in complex with human carboxypeptidase B
Identifiers
SymbolInhibitor_I68
PfamPF10468
InterProIPR019509
MEROPSI68
Available protein structures:
PDB  IPR019509 PF10468 (ECOD; PDBsum)  
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The Carboxypeptidase inhibitor I68 family represents a family of carboxypeptidase inhibitors found in ticks.[18]

Inhibitor I78

Quick facts Peptidase inhibitor I78 family, Identifiers ...
Peptidase inhibitor I78 family
Identifiers
SymbolInhibitor_I78
PfamPF11720
Pfam clanCL0367
InterProIPR021719
MEROPSI78
Available protein structures:
PDB  IPR021719 PF11720 (ECOD; PDBsum)  
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The peptidase inhibitor I78 family includes Aspergillus elastase inhibitor.

Compounds

See also

References

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