| Literature DB >> 30809526 |
Wariya Sanrattana1, Coen Maas1, Steven de Maat1.
Abstract
Excessive enzyme activity often has pathological consequences. This for example is the case in thrombosis and hereditary angioedema, where serine proteases of the coagulation system and kallikrein-kinin system are excessively active. Serine proteases are controlled by SERPINs (serine protease inhibitors). We here describe the basic biochemical mechanisms behind SERPIN activity and identify key determinants that influence their function. We explore the clinical phenotypes of several SERPIN deficiencies and review studies where SERPINs are being used beyond replacement therapy. Excitingly, rare human SERPIN mutations have led us and others to believe that it is possible to refine SERPINs toward desired behavior for the treatment of enzyme-driven pathology.Entities:
Keywords: SERPIN (serine proteinase inhibitor); bradykinin (BK); hemostasis; protein engineering; therapy
Year: 2019 PMID: 30809526 PMCID: PMC6379291 DOI: 10.3389/fmed.2019.00025
Source DB: PubMed Journal: Front Med (Lausanne) ISSN: 2296-858X
Figure 1The basic functions and inhibitory mechanism of SERPINs. (A) Regulatory functions of SERPINs (B) The structure of archetype native α1-antitrypsin. The reactive center loop (RCL) is in green, containing a protease cleavage site (P1-P1′). β-sheet A, comprising of 5 strands (s1A, s2A, s3A, s5A, and s6A) is in pink. These two regions serve as main features, which play an important role in the dramatic conformational change that SERPINs undergo during inhibition. The image was made in PyMol using the PDB file code: 1QLP (3). (C) Initially, a target protease docks and binds the recognition site, exposed on the RCL. This step leads to formation of the non-covalent Michaelis-Menten complex [PDB code: 1OPH (4)]. (D) Upon cleavage at P1-P1′, the SERPIN spontaneously refolds into a hyperstable conformation, where the N-terminal portion of cleaved RCL is inserted between central β-sheet A. This conformational change of the SERPIN results in “trapping” the covalently linked protease into an inactive form [PDB code: 1EZX (5)]. This SERPIN-protease complex will subsequently be eliminated from the circulation. (E) In some cases, a SERPIN can act as a substrate, where protease and SERPIN do not remain covalently linked. This results in an active protease that disassociates from the SERPIN, which leaves the SERPIN in a cleaved form [PDB code: cleaved 7API (6)]. AT: antithrombin; PCI, protein C inhibitor; PAI-1, plasminogen activator inhibitor 1; PAI-2, plasminogen activator inhibitor 2; HCII, heparin cofactor II; α1AT, α1-antitrypsin; ACT, antichymotrypsin; α2AP, α2-antiplasmin; C1INH, C1 esterase inhibitor; CBG, Corticosteroid-binding globulin; TBG, Thyroxine-binding globulin; CBP1, collagen-binding protein 1.
Amino acid sequence alignments of human SERPIN reactive center loop.
| SERPINA1 | G | T | E | A | A | G | A | M | F | L | E | A | I | P | M | S | I | P | P | E | V | – | – | – | – | K | F | N | K | P | F |
| SERPINA2 | G | T | E | A | T | G | A | P | H | L | E | E | K | A | W | S | K | Y | Q | T | V | – | – | – | – | M | F | N | R | P | F |
| SERPINA3 | G | T | E | A | S | A | A | T | A | V | K | I | T | L | L | S | A | L | V | E | T | R | T | I | V | R | F | N | R | P | F |
| SERPINA4 | G | T | E | A | A | A | A | T | T | F | A | I | K | F | F | S | A | Q | T | T | N | R | H | I | L | R | F | N | R | P | F |
| SERPINA5 | G | T | R | A | A | A | A | T | G | T | I | F | T | F | R | S | A | R | L | N | S | Q | R | L | V | – | F | N | R | P | F |
| SERPINA9 | G | T | E | A | T | A | A | T | T | T | K | F | I | V | R | S | K | D | G | S | Y | F | T | V | S | – | F | N | R | T | F |
| SERPINA10 | G | T | E | A | V | A | G | I | L | S | E | I | T | A | Y | S | M | P | P | V | I | – | – | – | – | K | V | D | R | P | F |
| SERPINA11 | G | T | E | A | G | A | A | S | G | L | L | S | Q | P | P | S | L | N | T | M | S | D | P | H | A | H | F | N | R | P | F |
| SERPINA12 | G | T | E | G | A | A | G | T | G | A | Q | T | L | P | M | E | T | P | L | V | V | K | I | – | – | – | – | D | K | P | Y |
| SERPINB1 | G | T | E | A | A | A | A | T | A | G | I | A | T | F | C | M | L | M | P | E | E | N | – | F | T | A | – | D | H | P | F |
| SERPINB2 | G | T | E | A | A | A | G | T | G | G | V | M | T | G | R | T | G | H | G | G | P | Q | – | F | V | A | – | D | H | P | F |
| SERPINB3 | G | A | E | A | A | A | A | T | A | V | V | G | F | G | S | S | P | T | S | T | N | E | E | F | H | C | – | N | H | P | F |
| SERPINB4 | G | V | E | A | A | A | A | T | A | V | V | V | V | E | L | S | S | P | S | T | N | E | E | F | C | C | – | N | H | P | F |
| SERPINB6 | G | T | E | A | A | A | A | T | A | A | I | M | M | M | R | C | A | R | F | V | P | R | – | F | C | A | – | D | H | P | F |
| SERPINB7 | G | T | E | A | T | A | A | T | G | S | N | I | V | E | K | Q | L | P | Q | S | T | L | – | F | R | A | – | D | H | P | F |
| SERPINB8 | G | T | E | A | A | A | A | T | A | V | V | R | N | S | R | C | S | R | M | E | P | R | – | F | C | A | – | D | H | P | F |
| SERPINB9 | G | T | E | A | A | A | A | S | S | C | F | V | V | A | E | C | C | M | E | S | G | P | R | F | C | A | – | D | H | P | F |
| SERPINB10 | G | T | E | A | A | A | G | S | G | S | E | I | D | I | R | I | R | V | P | S | I | E | – | F | N | A | – | N | H | P | F |
| SERPINB11 | G | T | E | A | A | A | A | T | G | D | S | I | A | V | K | S | L | P | M | R | A | Q | – | F | K | A | – | N | H | P | F |
| SERPINB12 | G | T | Q | A | A | A | A | T | G | A | V | V | S | E | R | S | L | R | S | W | V | E | – | F | N | A | – | N | H | P | F |
| SERPINB13 | G | T | E | A | A | A | A | T | G | I | G | F | T | V | T | S | A | P | G | H | E | N | V | H | C | – | – | N | H | P | F |
| SERPINC1 | G | S | E | A | A | A | S | T | A | V | V | I | A | G | R | S | L | N | P | N | R | V | T | F | K | A | – | N | R | P | F |
| SERPIND1 | G | T | Q | A | T | T | V | T | T | V | G | F | M | P | L | S | T | Q | V | R | – | – | – | F | T | V | – | D | R | P | F |
| SERPINE1 | G | T | V | A | S | S | S | T | A | V | I | V | S | A | R | M | A | P | E | E | I | I | M | – | – | – | – | D | R | P | F |
| SERPINE2 | G | T | K | A | S | A | A | T | T | A | I | L | I | A | R | S | S | P | P | W | – | – | – | F | I | V | – | D | R | P | F |
| SERPINE3 | G | T | K | A | S | G | A | T | A | L | L | L | L | K | R | S | R | I | P | I | – | – | – | F | K | A | – | D | R | P | F |
| SERPINF2 | G | V | E | A | A | A | A | T | S | – | I | A | M | S | R | M | S | L | S | S | – | – | – | F | S | V | – | N | R | P | F |
| SERPING1 | G | V | E | A | A | A | A | S | A | – | I | S | V | A | R | T | L | L | V | – | – | – | – | F | E | V | – | Q | Q | P | F |
| SERPINI1 | G | S | E | A | A | A | V | S | G | M | I | A | I | S | R | M | A | V | L | Y | P | Q | V | I | V | - | – | D | H | P | F |
| SERPINI2 | G | S | E | A | A | T | S | T | G | I | H | I | P | V | I | M | S | L | A | Q | S | Q | - | F | I | A | – | N | H | P | F |
| SERPINA6 | G | V | D | T | A | G | S | T | G | V | T | L | N | L | T | S | K | P | I | I | L | R | N | Q | – | – | – | – | – | P | F |
| SERPINA7 | G | T | E | A | A | A | V | P | E | V | E | L | S | D | Q | P | E | N | T | F | L | H | P | I | I | Q | I | D | R | S | F |
| SERPINA8 | E | R | E | P | T | E | S | T | Q | Q | L | N | K | P | E | V | L | E | V | T | L | N | R | – | – | – | – | – | – | P | F |
| SERPINB5 | G | G | D | S | I | E | V | P | G | A | R | I | L | Q | H | K | D | E | – | – | L | N | A | D | H | – | – | – | – | P | F |
| SERPINF1 | G | A | G | T | T | P | S | P | G | L | Q | P | A | H | L | T | F | P | – | – | L | D | Y | H | L | N | Q | – | – | P | F |
| SERPINH1 | G | N | P | F | D | Q | D | I | Y | G | R | E | E | L | R | S | P | K | – | – | L | F | Y | A | D | H | – | – | – | P | F |