1991BiochemistryRequires access

Regulation of extracellular matrix production by chemically synthesized subfragments of type I collagen carboxy propeptide

K Katayama, Jerome M. Seyer, Rajendra Raghow, Andrew H. Kang

Open publisher page 70 citations

Abstract

The complete COOH-propeptide of human alpha 1(I) procollagen was chemically synthesized as a series of overlapping subfragments which were then tested for their effect on extracellular matrix protein production by subconfluent human lung fibroblasts (HFL-1). One peptide (R11; residues 197-241) stimulated production of both collagen and fibronectin by 6-8-fold while a second peptide with a partial overlap with R11 (R9; residues 182-216) enhanced collagen accumulation. The peptide R12 (residues 197-216), which has a sequence common to both R9 and R11, also stimulated collagen production, suggesting that this 20-residues peptide alone contains the required structure for activity. The other synthetic peptides, R1-R13, were inactive in their ability to alter collagen or fibronectin production. Consistent with previously published data, the COOH-terminal peptide, R14, inhibited extracellular matrix production [Aycock, R.A., Raghow, R., Stricklin, G.P., Seyer, J.M., & Kang, A.H. (1986) J. Biol. Chem. 261, 14355-14360]. Both R9 and R11 preferentially stimulated production of collagen types I and III and fibronectin in dose-dependent manner. Elevated collagen and fibronectin production was evident at 4-h posttreatment, and maximal enhancement was seen at 8 h after exposure to peptides. Interestingly, subconfluent cultures of HFL-1 fibroblasts responded vigorously to the stimulatory action of R9 and R11 while confluent cells failed to show any response. Steady-state levels of messenger RNAs encoding type I procollagen and fibronectin were not measurably altered by treatment with R9 or R11, suggesting that the regulation of procollagens and fibronectin by these peptides involves posttranscriptional mechanisms.(ABSTRACT TRUNCATED AT 250 WORDS)

About this research paper

What this paper is about

The complete COOH-propeptide of human alpha 1(I) procollagen was chemically synthesized as a series of overlapping subfragments which were then tested for their effect on extracellular matrix protein production by subconfluent human lung fibroblasts (HFL-1). One peptide (R11; residues 197-241) stimulated production of both collagen and fibronectin by 6-8-fold while a second peptide with a partial overlap with R11 (R9; residues 182-216) enhanced collagen accumulation. The peptide R12 (residues 197-216), which has a sequence common to both R9 and R11, also stimulated collagen production, suggesting that this 20-residues peptide alone contains the required structure for activity. The other synthetic peptides, R1-R13, were inactive in their ability to alter collagen or fibronectin production. Consistent with previously published data, the COOH-terminal peptide, R14, inhibited extracellular matrix production [Aycock, R.A., Raghow, R., Stricklin, G.P., Seyer, J.M., & Kang, A.H. (1986) J. Biol. Chem. 261, 14355-14360]. Both R9 and R11 preferentially stimulated production of collagen types I and III and fibronectin in dose-dependent manner. Elevated collagen and fibronectin production was evident at 4-h posttreatment, and maximal enhancement was seen at 8 h after exposure to peptides. Interestingly, subconfluent cultures of HFL-1 fibroblasts responded vigorously to the stimulatory action of R9 and R11 while confluent cells failed to show any response. Steady-state levels of messenger RNAs encoding type I procollagen and fibronectin were not measurably altered by treatment with R9 or R11, suggesting that the regulation of procollagens and fibronectin by these peptides involves posttranscriptional mechanisms.(ABSTRACT TRUNCATED AT 250 WORDS)

Why it matters

OpenAlex reports 70 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The complete COOH-propeptide of human alpha 1(I) procollagen was chemically synthesized as a series of overlapping subfragments which were then tested for their effect on extracellular matrix protein production by subconfluent human lung fibroblasts (HFL-1). One peptide (R11; residues 197-241) stimulated production of both collagen and fibronectin by 6-8-fold while a second peptide with a partial overlap with R11 (R9; residues 182-216) enhanced collagen accumulation. The peptide R12 (residues 197-216), which has a sequence common to both R9 and R11, also stimulated collagen production, suggesting that this 20-residues peptide alone contains the required structure for activity. The other synthetic peptides, R1-R13, were inactive in their ability to alter collagen or fibronectin production. Consistent with previously published data, the COOH-terminal peptide, R14, inhibited extracellular matrix production [Aycock, R.A., Raghow, R., Stricklin, G.P., Seyer, J.M., & Kang, A.H. (1986) J. Biol. Chem. 261, 14355-14360]. Both R9 and R11 preferentially stimulated production of collagen types I and III and fibronectin in dose-dependent manner. Elevated collagen and fibronectin production was evident at 4-h posttreatment, and maximal enhancement was seen at 8 h after exposure to peptides. Interestingly, subconfluent cultures of HFL-1 fibroblasts responded vigorously to the stimulatory action of R9 and R11 while confluent cells failed to show any response. Steady-state levels of messenger RNAs encoding type I procollagen and fibronectin were not measurably altered by treatment with R9 or R11, suggesting that the regulation of procollagens and fibronectin by these peptides involves posttranscriptional mechanisms.(ABSTRACT TRUNCATED AT 250 WORDS)

Key concepts: Extracellular matrix, Protein precursor, Chemistry, Type I collagen, Matrix (chemical analysis), Extracellular, Biochemistry, Endocrinology

Related papers

Back to paper searchBrowse research topicsOriginal source
Regulation of extracellular matrix production by chemically synthesized subfragments of type I collagen carboxy propeptide — Research Paper | ScholarLens