scholarly journals Characterization of three constituent chains of collagen type VI by peptide sequences and cDNA clones

1987 ◽  
Vol 168 (2) ◽  
pp. 309-317 ◽  
Author(s):  
Mon-Li CHU ◽  
Karlheinz MANN ◽  
Rainer DEUTZMANN ◽  
Dorothy PRIBULA-CONWAY ◽  
Chuen-Chin HSU-CHEN ◽  
...  
1990 ◽  
Vol 111 (1) ◽  
pp. 271-278 ◽  
Author(s):  
A P Otte ◽  
D Roy ◽  
M Siemerink ◽  
C H Koster ◽  
F Hochstenbach ◽  
...  

We characterized a novel extracellular matrix element that is present in the earliest developmental stages of Xenopus laevis, and is recognized by an mAb 3D7. Based on amino acid composition, breakdown patterns by bacterial collagenases, and the molecular weights of the components of the antigen (240, 200, and 140 kD), we found it very similar to mammalian collagen type VI. The antigen is evenly distributed in unfertilized eggs. Shortly after fertilization, it becomes localized intracellularly in the periphery of the cleaving embryo as well as in the extracellular spaces. During gastrulation, the antigen was localized in the cells lining the blastopore and in the extracellular space between the two cell layers, in the presumptive archenteron. When Fab elements of the 3D7 antibody were added to the culture medium, gastrulation was blocked, suggesting a role for the antigen in gastrulation movements.


1985 ◽  
Vol 230 (2) ◽  
pp. 465-474 ◽  
Author(s):  
S Ayad ◽  
C A Chambers ◽  
C A Shuttleworth ◽  
M E Grant

Foetal-bovine nuchal ligament and aorta, together with adult-bovine aorta and pregnant uterus, were extracted under dissociative conditions in the absence and in the presence of a reducing agent. A collagenous glycoprotein of Mr 140000 [designated component 140K(VI)], identified in these extracts as the major periodate/Schiff-positive component, was shown to be related to collagen type VI. Digestion of non-reduced extracts with pepsin yielded periodate/Schiff-positive peptides that, on the basis of their electrophoretic mobilities, amino acid analyses and peptide ‘maps’, were identical with type VI collagen fragments prepared by standard procedures. It is concluded that collagen type VI occurs in vivo as molecule comprising three chains of Mr 140000 in which the helical domains account for about one-third of each polypeptide. Biosynthetic experiments with nuchal-ligament fibroblasts in culture demonstrated that a bacterial-collagenase-sensitive [3H]fucose-labelled glycoprotein, Mr 140000, was immunoprecipitated from culture medium by a specific antibody to the pepsin-derived form of collagen type VI. This result suggests that the collagenous polypeptides [140K(VI) components] represent the biosynthetic precursors of type VI collagen that do not undergo processing to smaller species before deposition in the extracellular matrix. Analyses of 5M-guanidinium chloride extracts of tissues with markedly different elastin contents and at different stages of development suggested that there was no relationship between collagen type VI and elastic-fibre microfibrils, a conclusion supported by the observation that the immunoprecipitated glycoprotein, Mr 140000, was distinct from the glycoprotein MFPI, Mr 150000, believed to be a constituent of these microfibrils [Sear, Grant & Jackson (1981) Biochem. J. 194, 587-598].


Parasitology ◽  
1992 ◽  
Vol 105 (2) ◽  
pp. 211-218 ◽  
Author(s):  
C. Chavez-Olortegui ◽  
M. Resende ◽  
C. A. P. Tavares

SUMMARYFractionation of Schistosoma mansoni cercariae gland secretion on a Sephadex G-150 column followed by a Superose-12 column in an FPLC system, isolated a 47 kDa protease which migrated as a single band on SDS–PAGE gels. A monoclonal antibody (MAb) was produced which recognizes only the 47 kDa protease, and an immuno-affinity column with the MAb was used to isolate the protease. The 47 kDa protease showed activity on several macromolecules such as elastin and collagen type VI besides gelatin and casein. This suggests that this enzyme can be one of the enzymes that might facilitate invasion of the cercariae through host skin. The optimal pH of the protease against the synthetic substrate, Ac-Phe-Arg-Nan, in Tris–HCI buffer was 10. Experiments with protease inhibitors indicate that the purified enzyme is a serine protease.


1988 ◽  
Vol 263 (27) ◽  
pp. 13930-13936
Author(s):  
M Kurabayashi ◽  
I Komuro ◽  
H Tsuchimochi ◽  
F Takaku ◽  
Y Yazaki

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