Regulation of c-fos expression by static stretch in rat myometrial smooth muscle cells

Objective: We investigated whether mechanical stretch stimulates expression of the immediate early gene c-fos messenger RNA in rat myometrial smooth muscle cells. Study Design: Freshly isolated myometrial smooth muscle cells (from virgin rats) were plated on flexible culture plates that were coated...

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Veröffentlicht in:American journal of obstetrics and gynecology 2002-06, Vol.186 (6), p.1358-1365
Hauptverfasser: Shynlova, Oksana P., Oldenhof, Alexandra D., Liu, Mingyao, Langille, Lowell, Lye, Stephen J.
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container_end_page 1365
container_issue 6
container_start_page 1358
container_title American journal of obstetrics and gynecology
container_volume 186
creator Shynlova, Oksana P.
Oldenhof, Alexandra D.
Liu, Mingyao
Langille, Lowell
Lye, Stephen J.
description Objective: We investigated whether mechanical stretch stimulates expression of the immediate early gene c-fos messenger RNA in rat myometrial smooth muscle cells. Study Design: Freshly isolated myometrial smooth muscle cells (from virgin rats) were plated on flexible culture plates that were coated with either collagen I, laminin, elastin, or pronectin and were subjected to a static stretch with a computerized strain unit. Immunocytochemistry was used to define smooth muscle cell phenotype, and c-fos expression levels were assessed by Northern blotting. Results: Myometrial smooth muscle cells maintained their phenotype for at least 7 days in culture. Stretch induced a dramatic increase in levels of c-fos messenger RNA, which peaked after 30 minutes. Stimulation of c-fos gene expression was dependent on the degree of stretch (maximum induction at 25% elongation). Interestingly, as little as 1 minute of stretch was sufficient to induce maximal c-fos expression at 30 minutes. The most dramatic induction of c-fos was observed in smooth muscle cells that were stretched on collagen I-coated plates. Conclusion: Myometrial smooth muscle cells can directly respond to mechanical stretch with a strength- and matrix component-dependent increase in c-fos messenger RNA. The time delay between the initial stimulus and the cumulative elevation of c-fos messenger RNA suggests a complex regulation from mechanoreception to c-fos gene expression. (Am J Obstet Gynecol 2002;186:1358-65.)
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Study Design: Freshly isolated myometrial smooth muscle cells (from virgin rats) were plated on flexible culture plates that were coated with either collagen I, laminin, elastin, or pronectin and were subjected to a static stretch with a computerized strain unit. Immunocytochemistry was used to define smooth muscle cell phenotype, and c-fos expression levels were assessed by Northern blotting. Results: Myometrial smooth muscle cells maintained their phenotype for at least 7 days in culture. Stretch induced a dramatic increase in levels of c-fos messenger RNA, which peaked after 30 minutes. Stimulation of c-fos gene expression was dependent on the degree of stretch (maximum induction at 25% elongation). Interestingly, as little as 1 minute of stretch was sufficient to induce maximal c-fos expression at 30 minutes. The most dramatic induction of c-fos was observed in smooth muscle cells that were stretched on collagen I-coated plates. Conclusion: Myometrial smooth muscle cells can directly respond to mechanical stretch with a strength- and matrix component-dependent increase in c-fos messenger RNA. The time delay between the initial stimulus and the cumulative elevation of c-fos messenger RNA suggests a complex regulation from mechanoreception to c-fos gene expression. (Am J Obstet Gynecol 2002;186:1358-65.)</description><identifier>ISSN: 0002-9378</identifier><identifier>EISSN: 1097-6868</identifier><identifier>DOI: 10.1067/mob.2002.122415</identifier><identifier>PMID: 12066122</identifier><identifier>CODEN: AJOGAH</identifier><language>eng</language><publisher>Philadelphia, PA: Mosby, Inc</publisher><subject>Animals ; Biological and medical sciences ; c- fos ; Cells, Cultured ; Collagen - pharmacology ; Diseases of mother, fetus and pregnancy ; Female ; Gene Expression - physiology ; Gene Expression Regulation - drug effects ; Gynecology. Andrology. 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Study Design: Freshly isolated myometrial smooth muscle cells (from virgin rats) were plated on flexible culture plates that were coated with either collagen I, laminin, elastin, or pronectin and were subjected to a static stretch with a computerized strain unit. Immunocytochemistry was used to define smooth muscle cell phenotype, and c-fos expression levels were assessed by Northern blotting. Results: Myometrial smooth muscle cells maintained their phenotype for at least 7 days in culture. Stretch induced a dramatic increase in levels of c-fos messenger RNA, which peaked after 30 minutes. Stimulation of c-fos gene expression was dependent on the degree of stretch (maximum induction at 25% elongation). Interestingly, as little as 1 minute of stretch was sufficient to induce maximal c-fos expression at 30 minutes. The most dramatic induction of c-fos was observed in smooth muscle cells that were stretched on collagen I-coated plates. Conclusion: Myometrial smooth muscle cells can directly respond to mechanical stretch with a strength- and matrix component-dependent increase in c-fos messenger RNA. The time delay between the initial stimulus and the cumulative elevation of c-fos messenger RNA suggests a complex regulation from mechanoreception to c-fos gene expression. (Am J Obstet Gynecol 2002;186:1358-65.)</description><subject>Animals</subject><subject>Biological and medical sciences</subject><subject>c- fos</subject><subject>Cells, Cultured</subject><subject>Collagen - pharmacology</subject><subject>Diseases of mother, fetus and pregnancy</subject><subject>Female</subject><subject>Gene Expression - physiology</subject><subject>Gene Expression Regulation - drug effects</subject><subject>Gynecology. Andrology. Obstetrics</subject><subject>In Vitro Techniques</subject><subject>mechanical stretch</subject><subject>Medical sciences</subject><subject>Muscle, Smooth - cytology</subject><subject>Muscle, Smooth - physiology</subject><subject>Myometrium</subject><subject>Myometrium - cytology</subject><subject>Myometrium - physiology</subject><subject>Phenotype</subject><subject>Pregnancy. Fetus. 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Andrology. Obstetrics</topic><topic>In Vitro Techniques</topic><topic>mechanical stretch</topic><topic>Medical sciences</topic><topic>Muscle, Smooth - cytology</topic><topic>Muscle, Smooth - physiology</topic><topic>Myometrium</topic><topic>Myometrium - cytology</topic><topic>Myometrium - physiology</topic><topic>Phenotype</topic><topic>Pregnancy. Fetus. 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subjects Animals
Biological and medical sciences
c- fos
Cells, Cultured
Collagen - pharmacology
Diseases of mother, fetus and pregnancy
Female
Gene Expression - physiology
Gene Expression Regulation - drug effects
Gynecology. Andrology. Obstetrics
In Vitro Techniques
mechanical stretch
Medical sciences
Muscle, Smooth - cytology
Muscle, Smooth - physiology
Myometrium
Myometrium - cytology
Myometrium - physiology
Phenotype
Pregnancy. Fetus. Placenta
Proto-Oncogene Proteins c-fos - genetics
Rats
RNA, Messenger - metabolism
Stress, Mechanical
Time Factors
title Regulation of c-fos expression by static stretch in rat myometrial smooth muscle cells
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