Literature DB >> 34105311

Role of Ciliary Protein Intraflagellar Transport Protein 88 in the Regulation of Cartilage Thickness and Osteoarthritis Development in Mice.

Clarissa R Coveney1,2, Linyi Zhu1, Jadwiga Miotla-Zarebska1, Bryony Stott1, Ida Parisi1, Vicky Batchelor1, Claudia Duarte1, Emer Chang1, Eleanor McSorley1, Tonia L Vincent1, Angus K T Wann.   

Abstract

OBJECTIVE: Mechanical and biologic cues drive cellular signaling in cartilage development, health, and disease. Primary cilia proteins, which are implicated in the transduction of biologic and physiochemical signals, control cartilage formation during skeletal development. This study was undertaken to assess the influence of the ciliary protein intraflagellar transport protein 88 (IFT88) on postnatal cartilage from mice with conditional knockout of the Ift88 gene (Ift88-KO).
METHODS: Ift88fl/fl and aggrecanCreERT2 mice were crossed to create a strain of cartilage-specific Ift88-KO mice (aggrecanCreERT2 ;Ift88fl/fl ). In these Ift88-KO mice and Ift88fl/fl control mice, tibial articular cartilage thickness was assessed by histomorphometry, and the integrity of the cartilage was assessed using Osteoarthritis Research Society International (OARSI) damage scores, from adolescence through adulthood. In situ mechanisms of cartilage damage were investigated in the microdissected cartilage sections using immunohistochemistry, RNAScope analysis, and quantitative polymerase chain reaction. Osteoarthritis (OA) was induced in aggrecanCreERT2 ;Ift88fl/fl mice and Ift88fl/fl control mice using surgical destabilization of the medial meniscus (DMM). Following tamoxifen injection and DMM surgery, the mice were given free access to exercise on a wheel.
RESULTS: Deletion of Ift88 resulted in progressive reduction in the thickness of the medial tibial cartilage in adolescent mice, as well as marked atrophy of the cartilage in mice during adulthood. In aggrecanCreERT2 ;Ift88fl/fl mice at age 34 weeks, the median thickness of the medial tibial cartilage was 89.42 μm (95% confidence interval [95% CI] 84.00-93.49), whereas in Ift88fl/fl controls at the same age, the median cartilage thickness was 104.00 μm (95% CI 100.30-110.50; P < 0.0001). At all time points, the median thickness of the calcified cartilage was reduced. In some mice, atrophy of the medial tibial cartilage was associated with complete, spontaneous degradation of the cartilage. Following DMM, aggrecanCreERT2 ;Ift88fl/fl mice were found to have increased OARSI scores of cartilage damage. In articular cartilage from maturing mice, atrophy was not associated with obvious increases in aggrecanase-mediated destruction or chondrocyte hypertrophy. Of the 44 candidate genes analyzed, only Tcf7l2 expression levels correlated with Ift88 expression levels in the microdissected cartilage. However, RNAScope analysis revealed that increased hedgehog (Hh) signaling (as indicated by increased expression of Gli1) was associated with the reductions in Ift88 expression in the tibial cartilage from Ift88-deficient mice. Wheel exercise restored both the articular cartilage thickness and levels of Hh signaling in these mice.
CONCLUSION: Our results in a mouse model of OA demonstrate that IFT88 performs a chondroprotective role in articular cartilage by controlling the calcification of cartilage via maintenance of a threshold of Hh signaling during physiologic loading.
© 2021 The Authors. Arthritis & Rheumatology published by Wiley Periodicals LLC on behalf of American College of Rheumatology.

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Year:  2021        PMID: 34105311     DOI: 10.1002/art.41894

Source DB:  PubMed          Journal:  Arthritis Rheumatol        ISSN: 2326-5191            Impact factor:   10.995


  7 in total

Review 1.  Role of Primary Cilia in Skeletal Disorders.

Authors:  Xinhua Li; Song Guo; Yang Su; Jiawei Lu; Donghua Hang; Shao Cao; Qiang Fu; Ziqing Li
Journal:  Stem Cells Int       Date:  2022-06-18       Impact factor: 5.131

Review 2.  The Extracellular Matrix of Articular Cartilage Controls the Bioavailability of Pericellular Matrix-Bound Growth Factors to Drive Tissue Homeostasis and Repair.

Authors:  Tonia L Vincent; Oliver McClurg; Linda Troeberg
Journal:  Int J Mol Sci       Date:  2022-05-26       Impact factor: 6.208

3.  Isolation, profiling, and tracking of extracellular vesicle cargo in Caenorhabditis elegans.

Authors:  Inna A Nikonorova; Juan Wang; Alexander L Cope; Peter E Tilton; Kaiden M Power; Jonathon D Walsh; Jyothi S Akella; Amber R Krauchunas; Premal Shah; Maureen M Barr
Journal:  Curr Biol       Date:  2022-03-24       Impact factor: 10.900

4.  Primary Cilia Direct Murine Articular Cartilage Tidemark Patterning Through Hedgehog Signaling and Ambulatory Load.

Authors:  Danielle Rux; Kimberly Helbig; Biao Han; Courtney Cortese; Eiki Koyama; Lin Han; Maurizio Pacifici
Journal:  J Bone Miner Res       Date:  2022-02-13       Impact factor: 6.390

5.  Highly efficient CRISPR-Cas9-mediated editing identifies novel mechanosensitive microRNA-140 targets in primary human articular chondrocytes.

Authors:  N Chaudhry; H Muhammad; C Seidl; D Downes; D A Young; Y Hao; L Zhu; T L Vincent
Journal:  Osteoarthritis Cartilage       Date:  2022-01-21       Impact factor: 6.576

6.  Ciliary IFT88 Protects Coordinated Adolescent Growth Plate Ossification From Disruptive Physiological Mechanical Forces.

Authors:  Clarissa R Coveney; Hasmik J Samvelyan; Jadwiga Miotla-Zarebska; Josephine Carnegie; Emer Chang; C Jonty Corrin; Trystan Coveney; Bryony Stott; Ida Parisi; Claudia Duarte; Tonia L Vincent; Katherine A Staines; Angus Kt Wann
Journal:  J Bone Miner Res       Date:  2022-02-20       Impact factor: 6.390

Review 7.  Roles of the calcified cartilage layer and its tissue engineering reconstruction in osteoarthritis treatment.

Authors:  Weiyang Wang; Ruixi Ye; Wenqing Xie; Yueyao Zhang; Senbo An; Yusheng Li; Yang Zhou
Journal:  Front Bioeng Biotechnol       Date:  2022-08-31
  7 in total

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