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Published on: June 12, 2017
m6A reader YTHDC1 modulates autophagy by targeting SQSTM1 in diabetic skin
Diefei Liang1,2, Wei-Jye Lin2,3, Meng Ren1,2
1Department of Endocrinology, Sun Yat-sen Memorial Hospital, Sun Yat-sen University, Guangzhou, China.
Abstract:
Dysregulation of macroautophagy/autophagy contributes to the delay of wound healing in diabetic skin. N6-methyladenosine (m6A) RNA modification is known to play a critical role in regulating autophagy. In this study, it was found that SQSTM1/p62 (sequestosome 1), an autophagy receptor, was significantly downregulated in two human keratinocyte cells lines with short-term high-glucose treatment, as well as in the epidermis of diabetic patients and a db/db mouse model with long-term hyperglycemia. Knockdown of SQSTM1 led to the impairment of autophagic flux, which was consistent with the results of high-glucose treatment in keratinocytes. Moreover, the m6A reader protein YTHDC1 (YTH domain containing 1), which interacted with SQSTM1 mRNA, was downregulated in keratinocytes under both the acute and chronic effects of hyperglycemia. Knockdown of YTHDC1 affected biological functions of keratinocytes, which included increased apoptosis rates and impaired wound-healing capacity. In addition, knockdown of endogenous YTHDC1 resulted in a blockade of autophagic flux in keratinocytes, while overexpression of YTHDC1 rescued the blockade of autophagic flux induced by high glucose. In vivo, knockdown of endogenous Ythdc1 or Sqstm1 inhibited autophagy in the epidermis and delayed wound healing. Interestingly, we found that a decrease of YTHDC1 drove SQSTM1 mRNA degradation in the nucleus. Furthermore, the results revealed that YTHDC1 interacted and cooperated with ELAVL1/HuR (ELAV like RNA binding protein 1) in modulating the expression of SQSTM1. Collectively, this study uncovered a previously unrecognized function for YTHDC1 in modulating autophagy via regulating the stability of SQSTM1 nuclear mRNA in diabetic keratinocytes.Abbreviations: ACTB: actin beta; AGEs: glycation end products; AL: autolysosome; AP: autophagosome; ATG: autophagy related; AKT: AKT serine/threonine kinase; ANOVA: analysis of variance; BECN1: beclin 1; Co-IP: co-immunoprecipitation; DEGs: differentially expressed genes; DM: diabetes mellitus; ELAVL1: ELAV like RNA binding protein 1; FTO: FTO alpha-ketoglutarate dependent dioxygenase; G: glucose; HaCaT: human keratinocyte; GO: Gene Ontology; GSEA: Gene Set Enrichment Analysis; HE: hematoxylin-eosin; IHC: immunohistochemical; IRS: immunoreactive score; KEAP1: kelch like ECH associated protein 1; KEGG: Kyoto Encyclopedia of Genes and Genomes; m6A: N6-methyladenosine; M: mannitol; MANOVA: multivariate analysis of variance; MAP1LC3: microtubule associated protein 1 light chain 3; MAP1LC3B: microtubule associated protein 1 light chain 3 beta; MeRIP: methylated RNA immunoprecipitation; METTL3: methyltransferase 3, N6-adenosine-methytransferase complex catalytic subunit; MTOR: mechanistic target of rapamycin kinase; MTORC1: mechanistic target of rapamycin complex 1; NBR1: NBR1 autophagy cargo receptor; NFE2L2: nuclear factor, erythroid 2 like 2; NG: normal glucose; NHEK: normal human epithelial keratinocyte; OE: overexpressing; p-: phospho-; PI: propidium iodide; PPIN: Protein-Protein Interaction Network; RBPs: RNA binding proteins; RIP: RNA immunoprecipitation; RNA-seq: RNA-sequence; RNU6-1: RNA, U6 small nuclear 1; ROS: reactive oxygen species; siRNAs: small interfering RNAs; SQSTM1: sequestosome 1; SRSF: serine and arginine rich splicing factor; T2DM: type 2 diabetes mellitus; TEM: transmission electron microscopy; TUBB: tubulin beta class I; WT: wild-type; YTHDC1: YTH domain containing 1.
Insights
Dysregulation of N-methyladenosine (m6A) reader YTHDC1 impairs autophagy and delays wound healing in diabetic skin by promoting SQSTM1 mRNA degradation. Restoring YTHDC1 function can improve diabetic wound healing.
Area of Science:
- Molecular Biology
- Cell Biology
- Dermatology
Background:
- Autophagy dysregulation is implicated in delayed wound healing in diabetes.
- N6-methyladenosine (m6A) RNA modification influences autophagy.
- SQSTM1/p62, an autophagy receptor, is crucial for autophagic flux.
Purpose of the Study:
- To investigate the role of m6A reader YTHDC1 in diabetic skin wound healing.
- To elucidate the mechanism by which YTHDC1 affects autophagy and SQSTM1 expression.
- To explore YTHDC1's potential as a therapeutic target for diabetic wound complications.
Main Methods:
- Utilized human keratinocyte cell lines and db/db mouse models.
- Employed high-glucose treatments to mimic diabetic conditions.
- Performed gene knockdown/overexpression of YTHDC1 and SQSTM1.
- Assessed autophagic flux, apoptosis, and wound healing capacity.
- Investigated YTHDC1-SQSTM1 mRNA interaction using RNA immunoprecipitation and nuclear degradation assays.
- Co-immunoprecipitation was used to study protein-protein interactions.
Main Results:
- SQSTM1/p62 was downregulated in high-glucose treated keratinocytes, diabetic skin, and db/db mice, impairing autophagic flux.
- YTHDC1 was downregulated under hyperglycemia, and its knockdown impaired keratinocyte function and wound healing.
- YTHDC1 knockdown blocked autophagic flux, while YTHDC1 overexpression rescued high-glucose-induced blockade.
- YTHDC1 knockdown inhibited epidermal autophagy and delayed wound healing in vivo.
- YTHDC1 decrease promoted SQSTM1 mRNA degradation in the nucleus.
- YTHDC1 interacted with ELAVL1/HuR to modulate SQSTM1 expression.
Conclusions:
- YTHDC1 plays a critical role in maintaining autophagic flux and promoting wound healing in diabetic keratinocytes.
- YTHDC1 regulates SQSTM1 mRNA stability in the nucleus, thereby controlling autophagy.
- YTHDC1's interaction with ELAVL1/HuR is essential for modulating SQSTM1 expression.
- Targeting YTHDC1 may offer a novel therapeutic strategy for improving diabetic wound healing.
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