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Journal ArticleDOI

Human proα1(I) collagen gene structure reveals evolutionary conservation of a pattern of introns and exons

TLDR
The data strongly support the notion that the type I genes have evolved from an ancestral multi-exon unit, and that once the gene was translated, a strong evolutionary pressure caused it to maintain this elaborate structure.
Abstract
The collagens represent an interesting example of a structurally related but genetically distinct family of proteins1. Type I, the most abundant of the vertebrate collagens, comprises two proα1(I) chains and one proα2(I) chain, each containing terminal propeptides and a central domain of 338 (Gly, X, Y) repeats. The structure of the chicken proα2(I) gene shows an intriguing relationship between exon organization and the arrangement of (Gly, X, Y) repeats (see ref. 2 for review). This has led to the suggestion3 that the collagens evolved from a common ancestral unit of 54 base pairs (bp). Here we present the structure of the entire human proα1(I) gene and compare this with the chicken proα2(I). The exon arrangement of the two genes is remarkably similar, although the human proα1(I) is more compact because of the shorter length of its introns. The data strongly support the notion that the type I genes have evolved from an ancestral multi-exon unit, and that once the gene was translated, a strong evolutionary pressure caused it to maintain this elaborate structure.

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Citations
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Journal ArticleDOI

A novel transforming protein (SHC) with an SH2 domain is implicated in mitogenic signal transduction.

TL;DR: The results suggest that the SHC gene products couple activated growth factor receptors to a signaling pathway that regulates the proliferation of mammalian cells.
Journal ArticleDOI

Peptides derived from two separate domains of the matrix protein thrombospondin-1 have anti-angiogenic activity

TL;DR: The results suggest that the large TSP1 molecule employs at least two different structural domains and perhaps two different mechanisms to accomplish a single physiological function, the inhibition of neovascularization.
Journal ArticleDOI

The structure of human thrombospondin, an adhesive glycoprotein with multiple calcium-binding sites and homologies with several different proteins.

TL;DR: Two monoclonal antibodies are used to isolate cDNA clones of thrombospondin from a human endothelial cell cDNA library and the complete nucleotide sequence of the coding region is determined.
Journal ArticleDOI

Structure of the Gene for Human von Willebrand Factor

TL;DR: A number of repetitive sequences were identified including 14 Alu repeats and a approximately 670-base pair TCTA simple repeat in intron 40 that is polymorphic.
Journal ArticleDOI

Thrombospondins: structure and regulation of expression.

TL;DR: All three TSPs demonstrate characteristic patterns of expression in the developing and adult mouse, and it is likely that each protein subserves a discrete function.
References
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Journal ArticleDOI

Structurally Distinct Collagen Types

TL;DR: Susceptibility to Vertebrate Collagenases, Susceptability to Other Proteases, and Solubility and Purification are studied.
Journal ArticleDOI

Cloning and characterization of five overlapping cDNAs specific for the human proα 1(I) collagen chain

TL;DR: Five overlapping cDNAs bearing sequences specific for the human pro alpha 1(I) collagen chain are cloned for the first time and cover from residue 247 in the alpha chain to part of the 3' end untranslated region of the proalpha 1( I) mRNA for a total of 3400 nucleotides.
Journal ArticleDOI

Nucleotide sequences of complementary deoxyribonucleic acids for the pro alpha 1 chain of human type I procollagen. Statistical evaluation of structures that are conserved during evolution.

TL;DR: In inspection of changes in the C-propeptide of the pro alpha 1 (I) chain, it was suggested that there was a highly conserved region around the carbohydrate attachment site similar to the highly Conserved region of 37 amino acids previously found in theC-propezide ofThe pro alpha 2(I) chains.
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