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Assessing Signaling Properties of Ectodermal Epithelia During Craniofacial Development
Published on: March 24, 2011
Role of surface ectoderm-specific mitofusin 2 in the corneal morphologic development of mice
Jiao Zhang1, Bo Qu1, Wenting Yu1
1Provincial Key Laboratory of Lens Research, Department of Ophthalmology, Eye Hospital of China Medical University, The 4th Affiliated Hospital of China Medical University Shenyang 110005, China.
Abstract:
Mitofusin 2 (Mfn2) mediates the mitochondrial fusion in dynamic balance between mitochondrial fission and fusion. This study aimed to investigate the role of Mfn2 in mice corneal dysplasia with conditional knockout (CKO) technique. The Mfn2 CKO mice model was established with the Cre-loxP system. Each offspring of Le-Cre +/-; Mfn2 fl/fl (Mfn2 CKO) mice and Mfn2fl/fl (Mfn2 WT) mice was identified by polymerase chain reaction (PCR). Macroscopic observation, immunohistostaining and HE staining were used to evaluate the corneal morphologic development in Mfn2 CKO mice and Mfn2 WT mice. The cells proliferation and apoptosis were detected by BrdU labeling and TUNEL assay. Real-time PCR was used to detect mRNA expression of corneal markers (K12, Col1α1, Pax6, keratocan and NSE). Results showed that Mfn2 CKO mice showed increased corneal thickness, small eyeball from E15.5 to P60 and small eye crack after birth. The corneal stromal thickness significantly increased in Mfn2 CKO mice, and the random arrangement fibers of the corneal stroma increased in Mfn2 CKO mice. The proliferative cells in the cornea of Mfn2 CKO mice were less than in Mfn2 WT mice while the apoptotic cells in the cornea of Mfn2 CKO mice were increased. K12 and Pax6 expression decreased in the cornea and the Col1α1 expression increased in Mfn2 CKO mice as compared to Mfn2 WT mice. The expression of corneal stromal marker Col1α1 in the Mfn2 CKO mice was significantly higher than that in the Mfn2 WT mice. Corneal thickness was mainly caused by corneal stroma collagen proliferation. In conclusion, Mfn2 deletion affects corneal development, especially because of collagen hyperplasia in the corneal stroma.
Insights
Mice lacking Mitofusin 2 (Mfn2) developed corneal dysplasia, characterized by increased thickness due to collagen overgrowth. This highlights Mfn2
Area of Science:
- Ophthalmology
- Cell Biology
- Genetics
Background:
- Mitofusin 2 (Mfn2) is crucial for maintaining mitochondrial fusion dynamics.
- Mitochondrial dysfunction is implicated in various developmental abnormalities.
Purpose of the Study:
- To investigate the role of Mfn2 in mouse corneal development and dysplasia.
- To understand the cellular and molecular mechanisms underlying Mfn2-deficiency-induced corneal changes.
Main Methods:
- Established a conditional knockout (CKO) mouse model for Mfn2 using the Cre-loxP system.
- Evaluated corneal morphology via macroscopic observation, HE staining, and immunohistochemistry.
- Assessed cell proliferation (BrdU) and apoptosis (TUNEL assay).
- Quantified gene expression of corneal markers (K12, Col1α1, Pax6) using real-time PCR.
Main Results:
- Mfn2 CKO mice exhibited increased corneal thickness, smaller eyeballs, and reduced eye-opening.
- Significant corneal stromal thickening and disorganized collagen fiber arrangement were observed.
- Reduced corneal cell proliferation and increased apoptosis were detected in Mfn2 CKO mice.
- Decreased expression of K12 and Pax6, with a marked increase in Col1α1, was noted.
Conclusions:
- Mfn2 deletion significantly impairs corneal development, leading to dysplasia.
- Collagen hyperplasia in the corneal stroma is the primary cause of increased corneal thickness.
- Mfn2 plays a critical role in regulating corneal structure and cellular homeostasis.
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