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典型文献
Transcriptome Analysis of Schwann Cells at Various Stages of Myelination Implicates Chromatin Regulator Sin3A in Control of Myelination Identity
文献摘要:
Enhancing remyelination after injury is of utmost importance for optimizing the recovery of nerve function.While the formation of myelin by Schwann cells(SCs)is critical for the function of the peripheral nervous system,the temporal dynamics and regulatory mechanisms that control the progress of the SC lineage through myelination require further elucidation.Here,using in vitro co-culture models,gene expression profiling of laser capture-microdissected SCs at various stages of myelination,and multilevel bioinformatic analysis,we demonstrated that SCs exhibit three distinct transcriptional characteristics during myelination:the immature,promyelinating,and myelinating states.We showed that suppressor interacting 3a(Sin3A)and 16 other transcription factors and chromatin regulators play important roles in the progress of myelination.Sin3A knockdown in the sciatic nerve or specifically in SCs reduced or delayed the myelination of regenerating axons in a rat crushed sciatic nerve model,while overexpression of Sin3A greatly promoted the remyelination of axons.Further,in vitro experiments revealed that Sin3A silencing inhibited SC migration and differentiation at the promyelination stage and promoted SC proliferation at the immature stage.In addition,SC differentiation and maturation may be regu-lated by the Sin3A/histone deacetylase2(HDAC2)com-plex functionally cooperating with Sox 10,as demonstrated by rescue assays.Together,these results complement the recent genome and proteome analyses of SCs during peripheral nerve myelin formation.The results also reveal a key role of Sin3A-dependent chromatin organization in promoting myelinogenic programs and SC differentiation to control peripheral myelination and repair.These findings may inform new treatments for enhancing remyelination and nerve regeneration.
文献关键词:
作者姓名:
Bin Zhang;Wenfeng Su;Junxia Hu;Jinghui Xu;Parizat Askar;Shuangxi Bao;Songlin Zhou;Gang Chen;Yun Gu
作者机构:
Jiangsu Key Laboratory of Neuroregeneration,Co-innovation Center of Neuroregeneration,Jiangsu Clinical Medicine Center of Tissue Engineering and Nerve Injury Repair,NMPA Key Laboratory for Research,Evaluation of Tissue Engineering Technology Products,Nantong University,Nantong 226001,China
引用格式:
[1]Bin Zhang;Wenfeng Su;Junxia Hu;Jinghui Xu;Parizat Askar;Shuangxi Bao;Songlin Zhou;Gang Chen;Yun Gu-.Transcriptome Analysis of Schwann Cells at Various Stages of Myelination Implicates Chromatin Regulator Sin3A in Control of Myelination Identity)[J].神经科学通报(英文版),2022(07):720-740
A类:
Myelination,Implicates,Sin3A,myelination,microdissected,promyelinating,myelinating,promyelination,deacetylase2,myelinogenic
B类:
Transcriptome,Analysis,Schwann,Cells,Various,Stages,Chromatin,Regulator,Control,Identity,Enhancing,remyelination,after,injury,utmost,importance,optimizing,recovery,nerve,While,formation,by,cells,SCs,critical,peripheral,nervous,system,temporal,dynamics,regulatory,mechanisms,that,control,progress,lineage,through,require,further,elucidation,Here,using,vitro,culture,models,profiling,laser,capture,various,stages,multilevel,bioinformatic,analysis,demonstrated,exhibit,three,distinct,transcriptional,characteristics,during,immature,states,We,showed,suppressor,interacting,3a,other,factors,chromatin,regulators,play,important,roles,knockdown,sciatic,specifically,reduced,delayed,regenerating,axons,crushed,while,overexpression,greatly,promoted,Further,experiments,revealed,silencing,inhibited,migration,differentiation,proliferation,In,addition,maturation,may,be,lated,histone,HDAC2,plex,functionally,cooperating,Sox,rescue,assays,Together,these,results,complement,recent,genome,proteome,analyses,also,key,dependent,organization,promoting,programs,repair,These,findings,new,treatments,enhancing,regeneration
AB值:
0.509331
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