Mimecan/osteoglycin-deficient mice have collagen fibril abnormalities.
نویسندگان
چکیده
PURPOSE To study the role of mimecan, a member of the small leucine-rich proteoglycans (SLRPs) gene family and one of the major components of the cornea and other connective tissues, mice that lack a functional mimecan gene were generated and characterized. METHODS Mimecan-deficient mice were generated by gene-targeting using standard techniques. Mice were genotyped by Southern blot analysis. The absence of mimecan transcripts was confirmed by Northern blot analysis. Corneal clarity was examined by slit lamp biomicroscopy. The strength of the skin was evaluated using a biomechanical skin fragility test. Collagen morphology in cornea and skin preparations from mimecan-null and control wild-type mice was analyzed by transmission electron microscopy. The diameter of collagen fibrils in these tissues was determined by morphometric analysis. RESULTS Mice lacking mimecan appear to develop normally, are viable and fertile. In a controlled laboratory environment they do not display an evident pathological phenotype compared to wild type mice. Examination of corneal clarity and measurements of corneal thickness show no significant changes in the cornea. However, a skin fragility test revealed a moderate reduction in the tensile strength of skin from mutant mice. Ultrastructural analyses show, on average, thicker collagen fibrils in both corneal and skin preparations from mimecan-null mice. Collagen fibrils from the cornea of mutant mice show an average diameter of 31.84+/-0.322 nm, versus 22.40+/-0.296 nm in their wild type litter-mates. The most pronounced increase in collagen fibril diameter was found in the skin of mimecan-null mice, who demonstrated an average diameter of 130.33+/-1.769 nm, versus 78.82+/-1.157 nm in the wild type mice. In addition, size variability and altered collagen morphology was detected in dorsal and tail skin preparations from the mutant mice. CONCLUSIONS The results of the present study demonstrate that mimecan, similar to other members of the SLRP gene family, has a role in regulating collagen fibrillogenesis in vivo. Further studies, such as functional challenges, an evaluation of potential compensation by other proteins (including members of the SLRP family), and generation of double-knockouts will be necessary to fully uncover physiological functions of mimecan in mice.
منابع مشابه
An x-ray diffraction study of corneal structure in mimecan-deficient mice.
PURPOSE Keratan sulfate proteoglycans (KSPGs) in the corneal stroma are believed to influence collagen fibrillar arrangement. This study was performed to investigate the fibrillar architecture of the corneal stroma in mice homozygous for a null mutation in the corneal KSPG, mimecan. METHODS Wild-type (n = 9) and mimecan-deficient (n = 10) mouse corneas were investigated by low-angle synchrotr...
متن کاملCorneal opacity in lumican-null mice: defects in collagen fibril structure and packing in the posterior stroma.
PURPOSE Gene targeted lumican-null mutants (lum(tm1sc)/lum(tm1sc)) have cloudy corneas with abnormally thick collagen fibrils. The purpose of the present study was to analyze the loss of transparency quantitatively and to define the associated corneal collagen fibril and stromal defects. METHODS Backscattering of light, a function of corneal haze and opacification, was determined regionally u...
متن کاملOsteoglycin prevents cardiac dilatation and dysfunction after myocardial infarction through infarct collagen strengthening.
RATIONALE To maintain cardiac mechanical and structural integrity after an ischemic insult, profound alterations occur within the extracellular matrix. Osteoglycin is a small leucine-rich proteoglycan previously described as a marker of cardiac hypertrophy. OBJECTIVE To establish whether osteoglycin may play a role in cardiac integrity and function after myocardial infarction (MI). METHODS ...
متن کاملGDF-5 deficiency alters stress-relaxation properties in mouse skin.
Objective: Growth / Differentiation Factor-5 (GDF-5) is a member of the family of Bone Morphogenetic Proteins (BMPs) known to have diverse effects on musculoskeletal connective tissues [1,2]. Recently, biomechanical and ultrastructural abnormalities have been demonstrated in several collagen-rich tissues from GDF-5 deficient mice, including Achilles tendon, tail tendon, and long bone [3-5]. In ...
متن کاملAn x-ray diffraction investigation of corneal structure in lumican-deficient mice.
PURPOSE The corneas of mice homozygous for a null mutation in lumican, a keratan sulfate-containing proteoglycan, are not as clear as normal. In the present study, mutant corneas were examined by synchrotron x-ray diffraction to see what structural changes might lie behind the loss of transparency. METHODS X-ray diffraction patterns were obtained from the corneas of 6-month-old and 2-month-ol...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Molecular vision
دوره 8 شماره
صفحات -
تاریخ انتشار 2002