Literature DB >> 3521732

Human plasma prekallikrein, a zymogen to a serine protease that contains four tandem repeats.

D W Chung, K Fujikawa, B A McMullen, E W Davie.   

Abstract

The amino acid sequence of human plasma prekallikrein was determined by a combination of automated Edman degradation and cDNA sequencing techniques. Human plasma prekallikrein was fragmented with cyanogen bromide, and 13 homogeneous peptides were isolated and sequenced. Cyanogen bromide peptides containing carbohydrate were further digested with trypsin, and the peptides containing carbohydrate were isolated and sequenced. Five asparagine-linked carbohydrate attachment sites were identified. The sequence determined by Edman degradation was aligned with the amino acid sequence predicted from cDNAs isolated from a lambda gt11 expression library. This library contained cDNA inserts prepared from human liver poly(A) RNA. Analysis of the cDNA indicated that human plasma prekallikrein is synthesized as a precursor with a signal peptide of 19 amino acids. The mature form of the protein that circulates in blood is a single-chain polypeptide of 619 amino acids. Plasma prekallikrein is converted to plasma kallikrein by factor XIIa by the cleavage of an internal Arg-Ile bond. Plasma kallikrein is composed of a heavy chain (371 amino acids) and a light chain (248 amino acids), and these 2 chains are held together by a disulfide bond. The heavy chain of plasma kallikrein originates from the amino-terminal end of the zymogen and is composed of 4 tandem repeats that are 90 or 91 amino acid residues in length. These repeat sequences are also homologous to those in human factor XI. The light chain of plasma kallikrein contains the catalytic portion of the enzyme and is homologous to the trypsin family of serine proteases.

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Year:  1986        PMID: 3521732     DOI: 10.1021/bi00357a017

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  35 in total

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Authors:  Solomon K Musani; Ervin R Fox; Aldi Kraja; Aurelian Bidulescu; Wolfgang Lieb; Honghuang Lin; Ashley Beecham; Ming-Huei Chen; Janine F Felix; Caroline S Fox; W H Linda Kao; Sharon L R Kardia; Ching-Ti Liu; Mike A Nalls; Tatjana Rundek; Ralph L Sacco; Jennifer Smith; Yan V Sun; Gregory Wilson; Zhaogong Zhang; Thomas H Mosley; Herman A Taylor; Ramachandran S Vasan
Journal:  Circ Cardiovasc Genet       Date:  2015-01-05

6.  The evolution of factor XI and the kallikrein-kinin system.

Authors:  Michał B Ponczek; Aleksandr Shamanaev; Alec LaPlace; S Kent Dickeson; Priyanka Srivastava; Mao-Fu Sun; Andras Gruber; Christian Kastrup; Jonas Emsley; David Gailani
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7.  S2'-subsite variations between human and mouse enzymes (plasmin, factor XIa, kallikrein) elucidate inhibition differences by tissue factor pathway inhibitor -2 domain1-wild-type, Leu17Arg-mutant and aprotinin.

Authors:  K Vadivel; Y Kumar; G I Ogueli; S M Ponnuraj; P Wongkongkathep; J A Loo; M S Bajaj; S P Bajaj
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9.  The amino-terminal sequence of the catalytic subunit of bovine enterokinase.

Authors:  A Light; H Janska
Journal:  J Protein Chem       Date:  1991-10

10.  Blarina toxin, a mammalian lethal venom from the short-tailed shrew Blarina brevicauda: Isolation and characterization.

Authors:  Masaki Kita; Yasuo Nakamura; Yuushi Okumura; Satoshi D Ohdachi; Yuichi Oba; Michiyasu Yoshikuni; Hiroshi Kido; Daisuke Uemura
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