New Nomenclature for the Human Tissue Kallikrein Gene Family (Technical Briefs) New Nomenclature for the Human Tissue Kallikrein Gene Family (Technical Briefs)

New Nomenclature for the Human Tissue Kallikrein Gene Family (Technical Briefs‪)‬

Clinical Chemistry 2000, Nov, 46, 11

    • $5.99
    • $5.99

Publisher Description

The human kallikrein gene family is important to the discipline of clinical chemistry because it contains genes that encode for valuable cancer biomarkers, including the best tumor marker available today, prostate-specific antigen (PSA). Despite reports of numerous kallikrein-like genes in the mouse (1), until 2-3 years ago, only three human kallikrein genes were recognized: pancreatic/ renal kallikrein (KLK1), human glandular kallikrein 2 (KLK2), and prostate-specific antigen (KLK3) (1, 2). The proteins encoded by the three kallikrein genes are now known as hK1, hK2, and hK3 (PSA). These three genes encode for serine proteases with either trypsin-like (hK1, hK2) or chymotrypsin-like (hK3) activity. Traditionally, kallikreins have been defined as enzymes that can act on high-molecular weight substrates and release bioactive peptides, known as kinins (3). Among the known kallikrein enzymes, only plasma kallikrein (encoded by a single gene localized on human chromosome 4835; official symbol KLKB1) and pancreatic/renal kallikrein (hK1) have significant kininogenase activity. The proteins encoded by the KLK2 and the KLK3 genes have minimal or no kininogenase activity (4,5). Why then are the KLK1, KLK2, and KLK3 genes classified together into one gene family (tissue kallikrein gene family), when two of the three enzymes have no significant kallikrein enzymatic activity? This grouping is justified, based on the extensive homologies between the three genes at both the DNA and protein levels [reviewed in Ref. (2)] as well as their clustering in a 60-kb region on human chromosome 19813.3-813.4 (6). It should then be emphasized that the term "kallikrein" does not necessarily imply that the gene product has kininogenase activity.

GENRE
Science & Nature
RELEASED
2000
1 November
LANGUAGE
EN
English
LENGTH
11
Pages
PUBLISHER
American Association for Clinical Chemistry, Inc.
SELLER
The Gale Group, Inc., a Delaware corporation and an affiliate of Cengage Learning, Inc.
SIZE
175.2
KB

More Books Like This

Molecular Endocrinology Molecular Endocrinology
2020
Handbook of Epigenetics (Enhanced Edition) Handbook of Epigenetics (Enhanced Edition)
2017
Bidirectional Gene Promoters (Enhanced Edition) Bidirectional Gene Promoters (Enhanced Edition)
2022
Genotype to Phenotype Genotype to Phenotype
2003
Somatic Genome Variation Somatic Genome Variation
2017
The Extracellular Matrix Factsbook The Extracellular Matrix Factsbook
1998

More Books by Clinical Chemistry

Lowering Cutoffs for Initial and Confirmation Testing for Cocaine and Marijuana: Large-Scale Study of Effects on the Rates of Drug-Positive Results (Drug Monitoring and Toxicology) Lowering Cutoffs for Initial and Confirmation Testing for Cocaine and Marijuana: Large-Scale Study of Effects on the Rates of Drug-Positive Results (Drug Monitoring and Toxicology)
1997
Myocardial Infarction Redefined: Role of Cardiac Troponin Testing (Editorial) Myocardial Infarction Redefined: Role of Cardiac Troponin Testing (Editorial)
2001
Distribution of Fasting Plasma Insulin, Free Fatty Acids, And Glucose Concentrations and of Homeostasis Model Assessment of Insulin Resistance in a Representative Sample of Quebec Children and Adolescents (Pediatric Clinical Chemistry) Distribution of Fasting Plasma Insulin, Free Fatty Acids, And Glucose Concentrations and of Homeostasis Model Assessment of Insulin Resistance in a Representative Sample of Quebec Children and Adolescents (Pediatric Clinical Chemistry)
2003
C677T and AI298C Polymorphisms of the Methylenetetrahydrofolate Reductase Gene: Incidence and Effect of Combined Genotypes on Plasma Fasting and Post-Methionine Load Homocysteine in Vascular Disease (Molecular Diagnostics and Genetics) C677T and AI298C Polymorphisms of the Methylenetetrahydrofolate Reductase Gene: Incidence and Effect of Combined Genotypes on Plasma Fasting and Post-Methionine Load Homocysteine in Vascular Disease (Molecular Diagnostics and Genetics)
2001
Acetylcholinesterase Activity and Biogenic Amines in Phenylketonuria (Technical Briefs) Acetylcholinesterase Activity and Biogenic Amines in Phenylketonuria (Technical Briefs)
2002
Homocysteine, 5, 10-Methylenetetrahydrofolate Reductase 677CT Polymorphism, Nutrient Intake, And Incident Cardiovascular Disease in 24 968 Initially Healthy Women (Molecular Diagnostics and Genetics) (Clinical Report) Homocysteine, 5, 10-Methylenetetrahydrofolate Reductase 677CT Polymorphism, Nutrient Intake, And Incident Cardiovascular Disease in 24 968 Initially Healthy Women (Molecular Diagnostics and Genetics) (Clinical Report)
2007