Colocalization of tissue transglutaminase and stress fibers in human vascular smooth muscle cells and human umbilical vein endothelial cells. 1997

Z A Chowdhury, and C Barsigian, and G D Chalupowicz, and T L Bach, and G Garcia-Manero, and J Martinez
Division of Hematology, Jefferson Medical College of Thomas Jefferson University, Philadelphia, Pennsylvania, 19107, USA.

The subcellular distribution of tissue transglutaminase in human umbilical vein endothelial cells and human arterial and venous smooth muscle cells was examined. Double-immunofluorescence staining of smooth muscle cells and endothelial cells with anti-transglutaminase antisera and rhodamine-tagged phalloidin revealed codistribution of transglutaminase with the stress fibers, with endothelial cells also containing a cytoplasmic pool. This pattern of distribution was confirmed by confocal microscopy. Immunoprecipitation experiments demonstrated that transglutaminase co-immunoprecipitated with myosin in high-molecular-weight complexes, but not with actin, suggesting that the association of transglutaminase with the stress fibers was due to its cross-linking to myosin. About 97% of endothelial cell transglutaminase activity was present in the cytosolic fraction and 3% in the particulate fraction. The detergent-insoluble fraction was practically devoid of activity as measured by the putrescine assay, but was active as evidenced by the covalent cross-linking of 125I-fibronectin. Western blotting with a polyclonal rabbit antiserum raised against human erythrocyte transglutaminase detected high levels of enzyme in endothelial cell cytosol and both detergent-soluble and detergent-insoluble membrane fractions. In contrast, smooth muscle cells contained much less cytosolic transglutaminase, as determined either functionally or antigenically. Furthermore, within the particulate fraction of the smooth muscle cells, most of the enzyme was located in the detergent-insoluble fraction, as assessed by Western blot analysis. Retinoic acid increased the levels of enzyme in the cytosol of all cell types and the increases were correlated with increases in mRNA. Thus, tissue transglutaminase is present in various particulate fractions of vascular smooth muscle cells and endothelial cells and may be present in this cellular fraction by virtue of autocross-linking of the enzyme itself to stress fiber-associated myosin.

UI MeSH Term Description Entries
D008856 Microscopy, Fluorescence Microscopy of specimens stained with fluorescent dye (usually fluorescein isothiocyanate) or of naturally fluorescent materials, which emit light when exposed to ultraviolet or blue light. Immunofluorescence microscopy utilizes antibodies that are labeled with fluorescent dye. Fluorescence Microscopy,Immunofluorescence Microscopy,Microscopy, Immunofluorescence,Fluorescence Microscopies,Immunofluorescence Microscopies,Microscopies, Fluorescence,Microscopies, Immunofluorescence
D009131 Muscle, Smooth, Vascular The nonstriated involuntary muscle tissue of blood vessels. Vascular Smooth Muscle,Muscle, Vascular Smooth,Muscles, Vascular Smooth,Smooth Muscle, Vascular,Smooth Muscles, Vascular,Vascular Smooth Muscles
D009218 Myosins A diverse superfamily of proteins that function as translocating proteins. They share the common characteristics of being able to bind ACTINS and hydrolyze MgATP. Myosins generally consist of heavy chains which are involved in locomotion, and light chains which are involved in regulation. Within the structure of myosin heavy chain are three domains: the head, the neck and the tail. The head region of the heavy chain contains the actin binding domain and MgATPase domain which provides energy for locomotion. The neck region is involved in binding the light-chains. The tail region provides the anchoring point that maintains the position of the heavy chain. The superfamily of myosins is organized into structural classes based upon the type and arrangement of the subunits they contain. Myosin ATPase,ATPase, Actin-Activated,ATPase, Actomyosin,ATPase, Myosin,Actin-Activated ATPase,Actomyosin ATPase,Actomyosin Adenosinetriphosphatase,Adenosine Triphosphatase, Myosin,Adenosinetriphosphatase, Actomyosin,Adenosinetriphosphatase, Myosin,Myosin,Myosin Adenosinetriphosphatase,ATPase, Actin Activated,Actin Activated ATPase,Myosin Adenosine Triphosphatase
D011503 Transglutaminases Transglutaminases catalyze cross-linking of proteins at a GLUTAMINE in one chain with LYSINE in another chain. They include keratinocyte transglutaminase (TGM1 or TGK), tissue transglutaminase (TGM2 or TGC), plasma transglutaminase involved with coagulation (FACTOR XIII and FACTOR XIIIa), hair follicle transglutaminase, and prostate transglutaminase. Although structures differ, they share an active site (YGQCW) and strict CALCIUM dependence. Glutaminyl-Peptide Gamma-Glutamyltransferases,Protein-Glutamine gamma-Glutamyltransferases,Transglutaminase,Gamma-Glutamyltransferases, Glutaminyl-Peptide,Glutaminyl Peptide Gamma Glutamyltransferases,Protein Glutamine gamma Glutamyltransferases,gamma-Glutamyltransferases, Protein-Glutamine
D002478 Cells, Cultured Cells propagated in vitro in special media conducive to their growth. Cultured cells are used to study developmental, morphologic, metabolic, physiologic, and genetic processes, among others. Cultured Cells,Cell, Cultured,Cultured Cell
D003599 Cytoskeleton The network of filaments, tubules, and interconnecting filamentous bridges which give shape, structure, and organization to the cytoplasm. Cytoplasmic Filaments,Cytoskeletal Filaments,Microtrabecular Lattice,Cytoplasmic Filament,Cytoskeletal Filament,Cytoskeletons,Filament, Cytoplasmic,Filament, Cytoskeletal,Filaments, Cytoplasmic,Filaments, Cytoskeletal,Lattice, Microtrabecular,Lattices, Microtrabecular,Microtrabecular Lattices
D003600 Cytosol Intracellular fluid from the cytoplasm after removal of ORGANELLES and other insoluble cytoplasmic components. Cytosols
D004730 Endothelium, Vascular Single pavement layer of cells which line the luminal surface of the entire vascular system and regulate the transport of macromolecules and blood components. Capillary Endothelium,Vascular Endothelium,Capillary Endotheliums,Endothelium, Capillary,Endotheliums, Capillary,Endotheliums, Vascular,Vascular Endotheliums
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000091345 Protein Glutamine gamma Glutamyltransferase 2 Calcium-dependent acyltransferase that catalyzes cross-linking of proteins at a GLUTAMINE in one chain with primary amine such as in LYSINE in another chain. In addition it can also accept monoamine substrates to catalyze post-translational modifications (e.g., protein serotonylation). TGM2 Proteins,Tissue Transglutaminase,Tissue-Type Transglutaminase,Transglutaminase 2,Transglutaminase C,Transglutaminase II,TGase II,Proteins, TGM2,Tissue Type Transglutaminase,Transglutaminase, Tissue,Transglutaminase, Tissue-Type

Related Publications

Z A Chowdhury, and C Barsigian, and G D Chalupowicz, and T L Bach, and G Garcia-Manero, and J Martinez
August 1987, Archives of biochemistry and biophysics,
Z A Chowdhury, and C Barsigian, and G D Chalupowicz, and T L Bach, and G Garcia-Manero, and J Martinez
January 2011, Hypertension in pregnancy,
Z A Chowdhury, and C Barsigian, and G D Chalupowicz, and T L Bach, and G Garcia-Manero, and J Martinez
July 1999, Experimental cell research,
Z A Chowdhury, and C Barsigian, and G D Chalupowicz, and T L Bach, and G Garcia-Manero, and J Martinez
December 2007, FASEB journal : official publication of the Federation of American Societies for Experimental Biology,
Z A Chowdhury, and C Barsigian, and G D Chalupowicz, and T L Bach, and G Garcia-Manero, and J Martinez
November 2009, Analytical biochemistry,
Z A Chowdhury, and C Barsigian, and G D Chalupowicz, and T L Bach, and G Garcia-Manero, and J Martinez
November 2000, Circulation research,
Z A Chowdhury, and C Barsigian, and G D Chalupowicz, and T L Bach, and G Garcia-Manero, and J Martinez
December 1989, The Journal of biological chemistry,
Z A Chowdhury, and C Barsigian, and G D Chalupowicz, and T L Bach, and G Garcia-Manero, and J Martinez
February 2017, Cellular and molecular life sciences : CMLS,
Z A Chowdhury, and C Barsigian, and G D Chalupowicz, and T L Bach, and G Garcia-Manero, and J Martinez
November 2018, Microvascular research,
Z A Chowdhury, and C Barsigian, and G D Chalupowicz, and T L Bach, and G Garcia-Manero, and J Martinez
October 1994, Journal of biomedical materials research,
Copied contents to your clipboard!