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Erschienen in: Calcified Tissue International 5/2020

01.05.2020 | Original Research

BMP2 Modified by the m6A Demethylation Enzyme ALKBH5 in the Ossification of the Ligamentum Flavum Through the AKT Signaling Pathway

verfasst von: Hai-Feng Wang, Ming-jie Kuang, Shi-jie Han, An-bang Wang, Jie Qiu, Feng Wang, Bing-yi Tan, Da-Chuan Wang

Erschienen in: Calcified Tissue International | Ausgabe 5/2020

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Abstract

Ossification of the ligamentum flavum (OLF) is characterized by a process of ectopic bone formation in the ligamentum flavum. The definitive pathophysiology of OLF still remains unclear, but the epigenetic m6A modification plays an important role in OLF. In addition, no studies have reported the function of ALKBH5 in OLF development. In this study, we investigated the function of the m6A demethylation enzyme ALKBH5 in OLF. To evaluate the function of ALKBH5, OLF tissues and normal ligamentum flavum tissues were collected. In vitro methods, including HE, IHC and western blotting assays, were used to evaluate the association of ALKBH5 with OLF. In addition, we verified the effects of ALKBH5 on osteogenesis using alizarin red and ALP staining. MeRIP q-PCR was performed to investigate the methylation level of BMP2. Moreover, the mechanism of ALKBH5-mediated regulation of the ossification of the ligamentum flavum cells through the AKT signaling pathway was also verified. The present study showed that the expression of ALKBH5 increased in OLF tissues. The overexpression of ALKBH5 increased the expression of osteogenic genes and promoted the ossification of ligamentum flavum cells. Furthermore, BMP2 was significantly enriched in the ligamentum flavum cells of the anti-m6A group compared with those of the IgG group. The overexpression of ALKBH5 led to the activation of p-AKT, and BMP2 was regulated by ALKBH5 through the AKT signaling pathway. ALKBH5 promoted the osteogenesis of the ligamentum flavum cells through BMP2 demethylation and AKT activation. ALKBH5 was shown to be an important demethylation enzyme in OLF development.
Literatur
1.
Zurück zum Zitat Polgar F (1920) Uber interakuelle wirbelverkalkung. Fortschr Geb Rongenstr Nuklearmed Erganzungsband 40:292–298 Polgar F (1920) Uber interakuelle wirbelverkalkung. Fortschr Geb Rongenstr Nuklearmed Erganzungsband 40:292–298
2.
Zurück zum Zitat Miyasaka K, Kaneda K, Sato S, Iwasaki Y, Abe S, Takei H, Tsuru M, Tashiro K, Abe H, Fujioka Y (1900) Myelopathy due to ossification or calcification of the ligamentum flavum: radiologic and histologic evaluations. AJNR Am J Neuroradiol 4:629–632 Miyasaka K, Kaneda K, Sato S, Iwasaki Y, Abe S, Takei H, Tsuru M, Tashiro K, Abe H, Fujioka Y (1900) Myelopathy due to ossification or calcification of the ligamentum flavum: radiologic and histologic evaluations. AJNR Am J Neuroradiol 4:629–632
3.
Zurück zum Zitat Tokala D, Lam K, Prince HG (2007) Ossification of the proximal thoracic ligamenta flava causing acute myelopathy in a Caucasian: case report and literature review. Spinal Cord 45:310–313CrossRefPubMed Tokala D, Lam K, Prince HG (2007) Ossification of the proximal thoracic ligamenta flava causing acute myelopathy in a Caucasian: case report and literature review. Spinal Cord 45:310–313CrossRefPubMed
4.
Zurück zum Zitat Guo JJ, Luk KD, Karppinen J, Yang H, Cheung KM (2010) Prevalence, distribution, and morphology of ossification of the ligamentum flavum: a population study of one thousand seven hundred thirty-six magnetic resonance imaging scans. Spine 35:51–56CrossRefPubMed Guo JJ, Luk KD, Karppinen J, Yang H, Cheung KM (2010) Prevalence, distribution, and morphology of ossification of the ligamentum flavum: a population study of one thousand seven hundred thirty-six magnetic resonance imaging scans. Spine 35:51–56CrossRefPubMed
5.
Zurück zum Zitat Hai L, Lei-Sheng J, Li-Yang D (2007) Hormones and growth factors in the pathogenesis of spinal ligament ossification. Eur Spine J 16:1075–1084CrossRef Hai L, Lei-Sheng J, Li-Yang D (2007) Hormones and growth factors in the pathogenesis of spinal ligament ossification. Eur Spine J 16:1075–1084CrossRef
6.
Zurück zum Zitat Hanakita J, Suwa H, Ohta F, Nishi S, Sakaida H, Iihara K (1990) Neuroradiological examination of thoracic radiculo-myelopathy due to ossification of the ligamentum flavum. Neuroradiology 32:38CrossRefPubMed Hanakita J, Suwa H, Ohta F, Nishi S, Sakaida H, Iihara K (1990) Neuroradiological examination of thoracic radiculo-myelopathy due to ossification of the ligamentum flavum. Neuroradiology 32:38CrossRefPubMed
7.
Zurück zum Zitat Kim HN, Min WK, Jeong JH, Kim SG, Kim JR, Kim SY, Choi JY, Park BC (2011) Combination of Runx2 and BMP2 increases conversion of human ligamentum flavum cells into osteoblastic cells. BMB Rep 44:446–451CrossRefPubMed Kim HN, Min WK, Jeong JH, Kim SG, Kim JR, Kim SY, Choi JY, Park BC (2011) Combination of Runx2 and BMP2 increases conversion of human ligamentum flavum cells into osteoblastic cells. BMB Rep 44:446–451CrossRefPubMed
8.
Zurück zum Zitat Yayama T, Uchida K, Kobayashi S, Kokubo Y, Sato R (2007) Thoracic ossification of the human ligamentum flavum: histopathological and immunohistochemical findings around the ossified lesion. J Neurosurg Spine 7:184–193CrossRefPubMed Yayama T, Uchida K, Kobayashi S, Kokubo Y, Sato R (2007) Thoracic ossification of the human ligamentum flavum: histopathological and immunohistochemical findings around the ossified lesion. J Neurosurg Spine 7:184–193CrossRefPubMed
10.
Zurück zum Zitat Zhao BS, Roundtree IA, He C (2017) Post-transcriptional gene regulation by mRNA modifications. Nat Rev Mol Cell Biol 18:31–42CrossRefPubMed Zhao BS, Roundtree IA, He C (2017) Post-transcriptional gene regulation by mRNA modifications. Nat Rev Mol Cell Biol 18:31–42CrossRefPubMed
11.
Zurück zum Zitat Fu Y, Dominissini D, Rechavi G, He C (2014) Gene expression regulation mediated through reversible m6A RNA methylation. Nat Rev Genet 15:293–306CrossRefPubMed Fu Y, Dominissini D, Rechavi G, He C (2014) Gene expression regulation mediated through reversible m6A RNA methylation. Nat Rev Genet 15:293–306CrossRefPubMed
12.
Zurück zum Zitat Desrosiers R, Friderici K, Rottman F (1974) Identification of methylated nucleosides in messenger RNA from Novikoff hepatoma cells. Proc Natl Acad Sci USA 71:3971–3975CrossRefPubMedPubMedCentral Desrosiers R, Friderici K, Rottman F (1974) Identification of methylated nucleosides in messenger RNA from Novikoff hepatoma cells. Proc Natl Acad Sci USA 71:3971–3975CrossRefPubMedPubMedCentral
13.
Zurück zum Zitat Panneerdoss S, Eedunuri VK, Yadav P, Timilsina S, Rajamanickam S, Viswanadhapalli S, Abdelfattah N (2018) Cross-talk among writers, readers, and erasers of m(6)A regulates cancer growth and progression. Sci Adv 4:eaar8263CrossRefPubMedPubMedCentral Panneerdoss S, Eedunuri VK, Yadav P, Timilsina S, Rajamanickam S, Viswanadhapalli S, Abdelfattah N (2018) Cross-talk among writers, readers, and erasers of m(6)A regulates cancer growth and progression. Sci Adv 4:eaar8263CrossRefPubMedPubMedCentral
14.
Zurück zum Zitat Chen M, Wei L, Law CT, Tsang FH, Shen J, Cheng CL, Tsang LH, Ho DW, Chiu DK, Lee JM, Wong CC, Ng IO, Wong CM (2017) RNA N6-methyladenosine methyltransferase METTL3 promotes liver cancer progression through YTHDF2 dependent post-transcriptional silencing of SOCS2. Hepatology. https://doi.org/10.1002/hep.29683CrossRefPubMed Chen M, Wei L, Law CT, Tsang FH, Shen J, Cheng CL, Tsang LH, Ho DW, Chiu DK, Lee JM, Wong CC, Ng IO, Wong CM (2017) RNA N6-methyladenosine methyltransferase METTL3 promotes liver cancer progression through YTHDF2 dependent post-transcriptional silencing of SOCS2. Hepatology. https://​doi.​org/​10.​1002/​hep.​29683CrossRefPubMed
16.
Zurück zum Zitat Zhang J, Guo S, Piao HY, Wang Y, Wu Y, Meng XY, Yang D, Zheng ZC, Zhao Y (2019) ALKBH5 promotes invasion and metastasis of gastric cancer by decreasing methylation of the lncRNA NEAT1. J Physiol Biochem 75:379–389CrossRefPubMedPubMedCentral Zhang J, Guo S, Piao HY, Wang Y, Wu Y, Meng XY, Yang D, Zheng ZC, Zhao Y (2019) ALKBH5 promotes invasion and metastasis of gastric cancer by decreasing methylation of the lncRNA NEAT1. J Physiol Biochem 75:379–389CrossRefPubMedPubMedCentral
17.
Zurück zum Zitat Zhong ZM, Chen JT (2009) Phenotypic characterization of ligamentum flavum cells from patients with ossification of ligamentum flavum. Yonsei Med J 50:375–379CrossRefPubMedPubMedCentral Zhong ZM, Chen JT (2009) Phenotypic characterization of ligamentum flavum cells from patients with ossification of ligamentum flavum. Yonsei Med J 50:375–379CrossRefPubMedPubMedCentral
18.
Zurück zum Zitat Kuang M-J, Zhang W-H, He W-W, Sun L, Ma J-X, Wang D, Ma X-l (2019) Naringin regulates bone metabolism in glucocorticoid-induced osteonecrosis of the femoral head via the Akt/Bad signal cascades. Chemico-biol Interact 304:97–105CrossRef Kuang M-J, Zhang W-H, He W-W, Sun L, Ma J-X, Wang D, Ma X-l (2019) Naringin regulates bone metabolism in glucocorticoid-induced osteonecrosis of the femoral head via the Akt/Bad signal cascades. Chemico-biol Interact 304:97–105CrossRef
19.
Zurück zum Zitat Albrechtova J, Kubinova Z, Soukup A, Janacek J (2019) Image analysis: basic procedures for description of plant structures. Methods Mol Biol 1992:109–119CrossRefPubMed Albrechtova J, Kubinova Z, Soukup A, Janacek J (2019) Image analysis: basic procedures for description of plant structures. Methods Mol Biol 1992:109–119CrossRefPubMed
20.
Zurück zum Zitat Georges R, Béatrice V, Fred D, Roland B, Sergio RR (2010) BMP-2 controls alkaline phosphatase expression and osteoblast mineralization by a Wnt autocrine loop. J Bone Miner Res 18:1842–1853 Georges R, Béatrice V, Fred D, Roland B, Sergio RR (2010) BMP-2 controls alkaline phosphatase expression and osteoblast mineralization by a Wnt autocrine loop. J Bone Miner Res 18:1842–1853
21.
Zurück zum Zitat Kuang MJ, Xing F, Wang D, Sun L, Ma JX, Ma XL (2019) CircUSP45 inhibited osteogenesis in glucocorticoid-induced osteonecrosis of femoral head by sponging miR-127-5p through PTEN/AKT signal pathway: experimental studies. Biochem Biophys Res Commun 509:255–261CrossRefPubMed Kuang MJ, Xing F, Wang D, Sun L, Ma JX, Ma XL (2019) CircUSP45 inhibited osteogenesis in glucocorticoid-induced osteonecrosis of femoral head by sponging miR-127-5p through PTEN/AKT signal pathway: experimental studies. Biochem Biophys Res Commun 509:255–261CrossRefPubMed
22.
Zurück zum Zitat Bertrand J, Nitschke Y, Fuerst M, Hermann S, Schafers M, Sherwood J, Nalesso G, Ruether W, Rutsch F, Dell'Accio F, Pap T (2012) Decreased levels of nucleotide pyrophosphatase phosphodiesterase 1 are associated with cartilage calcification in osteoarthritis and trigger osteoarthritic changes in mice. Ann Rheum Dis 71:1249–1253CrossRefPubMed Bertrand J, Nitschke Y, Fuerst M, Hermann S, Schafers M, Sherwood J, Nalesso G, Ruether W, Rutsch F, Dell'Accio F, Pap T (2012) Decreased levels of nucleotide pyrophosphatase phosphodiesterase 1 are associated with cartilage calcification in osteoarthritis and trigger osteoarthritic changes in mice. Ann Rheum Dis 71:1249–1253CrossRefPubMed
24.
Zurück zum Zitat Han Y, Hong Y, Li L, Li T, Zhang Z, Wang J, Xia H, Tang Y, Shi Z, Han X, Chen T, Liu Q, Zhang M, Zhang K, Hong W, Xue Y (2018) A transcriptome-level study identifies changing expression profiles for ossification of the ligamentum flavum of the spine. Mol Therapy Nucleic Acids 12:872–883CrossRef Han Y, Hong Y, Li L, Li T, Zhang Z, Wang J, Xia H, Tang Y, Shi Z, Han X, Chen T, Liu Q, Zhang M, Zhang K, Hong W, Xue Y (2018) A transcriptome-level study identifies changing expression profiles for ossification of the ligamentum flavum of the spine. Mol Therapy Nucleic Acids 12:872–883CrossRef
25.
Zurück zum Zitat Yang X, Qu X, Meng X, Li M, Fan D, Fan T, Huang AY, Chen Z, Zhang C (2018) MiR-490-3p inhibits osteogenic differentiation in thoracic ligamentum flavum cells by targeting FOXO1. Int J Biol Sci 14:1457–1465CrossRefPubMedPubMedCentral Yang X, Qu X, Meng X, Li M, Fan D, Fan T, Huang AY, Chen Z, Zhang C (2018) MiR-490-3p inhibits osteogenic differentiation in thoracic ligamentum flavum cells by targeting FOXO1. Int J Biol Sci 14:1457–1465CrossRefPubMedPubMedCentral
26.
Zurück zum Zitat Yayama T, Mori K, Okumura N, Nishizawa K, Kumagai K, Nakamura A, Imai S (2018) Wnt signaling pathway correlates with ossification of the spinal ligament: a microRNA array and immunohistochemical study. J Orthopaedic Sci 23:26–31CrossRef Yayama T, Mori K, Okumura N, Nishizawa K, Kumagai K, Nakamura A, Imai S (2018) Wnt signaling pathway correlates with ossification of the spinal ligament: a microRNA array and immunohistochemical study. J Orthopaedic Sci 23:26–31CrossRef
27.
Zurück zum Zitat Li XC, Jin F, Wang BY, Yin XJ, Hong W, Tian FJ (2019) The m6A demethylase ALKBH5 controls trophoblast invasion at the maternal-fetal interface by regulating the stability of CYR61 mRNA. Theranostics 9:3853–3865CrossRefPubMedPubMedCentral Li XC, Jin F, Wang BY, Yin XJ, Hong W, Tian FJ (2019) The m6A demethylase ALKBH5 controls trophoblast invasion at the maternal-fetal interface by regulating the stability of CYR61 mRNA. Theranostics 9:3853–3865CrossRefPubMedPubMedCentral
28.
Zurück zum Zitat Takahashi T, Hanakita J, Minami M (2018) Pathophysiology of calcification and ossification of the ligamentum flavum in the cervical spine. Neurosurg Clin N Am 29:47–54CrossRefPubMed Takahashi T, Hanakita J, Minami M (2018) Pathophysiology of calcification and ossification of the ligamentum flavum in the cervical spine. Neurosurg Clin N Am 29:47–54CrossRefPubMed
29.
Zurück zum Zitat Nouri A, Tetreault L, Singh A, Karadimas SK, Fehlings MG (2015) Degenerative cervical myelopathy: epidemiology, genetics, and pathogenesis. Spine 40:E675–693CrossRefPubMed Nouri A, Tetreault L, Singh A, Karadimas SK, Fehlings MG (2015) Degenerative cervical myelopathy: epidemiology, genetics, and pathogenesis. Spine 40:E675–693CrossRefPubMed
31.
Zurück zum Zitat Liu J, Eckert MA (2018) m(6)A mRNA methylation regulates AKT activity to promote the proliferation and tumorigenicity of endometrial cancer. Nat Cell 20:1074–1083CrossRef Liu J, Eckert MA (2018) m(6)A mRNA methylation regulates AKT activity to promote the proliferation and tumorigenicity of endometrial cancer. Nat Cell 20:1074–1083CrossRef
Metadaten
Titel
BMP2 Modified by the m6A Demethylation Enzyme ALKBH5 in the Ossification of the Ligamentum Flavum Through the AKT Signaling Pathway
verfasst von
Hai-Feng Wang
Ming-jie Kuang
Shi-jie Han
An-bang Wang
Jie Qiu
Feng Wang
Bing-yi Tan
Da-Chuan Wang
Publikationsdatum
01.05.2020
Verlag
Springer US
Erschienen in
Calcified Tissue International / Ausgabe 5/2020
Print ISSN: 0171-967X
Elektronische ISSN: 1432-0827
DOI
https://doi.org/10.1007/s00223-019-00654-6

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