Citation: | Chen W,Xu GC,Huang ZL,et al.Research advances on the mechanism of nerve regeneration-related protein in skin fibrosis[J].Chin J Burns Wounds,2023,39(5):491-495.DOI: 10.3760/cma.j.cn501225-20220701-00278. |
[1] |
StudlerJM,GlowinskiJ,Lévi-StraussM.An abundant mRNA of the embryonic brain persists at a high level in cerebellum, hippocampus and olfactory bulb during adulthood[J].Eur J Neurosci,1993,5(6):614-623.DOI: 10.1111/j.1460-9568.1993.tb00527.x.
|
[2] |
StradiotL, MannaertsI, van GrunsvenLA. P311, friend, or foe of tissue fibrosis?[J]. Front Pharmacol,2018,9: 1151.DOI: 10.3389/fphar.2018.01151.
|
[3] |
PengX,YuanSZ,TanJL,et al. Identification of ITGB4BP as a new interaction protein of P311[J].Life Sci,2012,90(15/16):585-590.DOI: 10.1016/j.lfs.2012.02.008.
|
[4] |
LiuY,ZhouXH,HuNY,et al.P311 regulates distal lung development via its interaction with several binding proteins[J].Mech Dev,2020,163:103633.DOI: 10.1016/j.mod.2020.103633.
|
[5] |
MarianiL,McDonoughWS,HoelzingerDB,et al.Identification and validation of P311 as a glioblastoma invasion gene using laser capture microdissection[J].Cancer Res,2001,61(10):4190-4196.
|
[6] |
KimH, KimJH, KimSY, et al. Meta-analysis of large-scale toxicogenomic data finds neuronal regeneration related protein and cathepsin D to be novel biomarkers of drug-induced toxicity[J]. PLoS One,2016, 11(9): e0163403.DOI: 10.1371/journal.pone.0163403.
|
[7] |
ChengT,YueM,AslamMN,et al. Neuronal protein 3.1 deficiency leads to reduced cutaneous scar collagen deposition and tensile strength due to impaired transforming growth factor-β1 to -β3 translation[J]. Am J Pathol, 2017,187(2):292-303.DOI: 10.1016/j.ajpath.2016.10.004.
|
[8] |
DuanFF,BarronG, MelitonA, et al. P311 promotes lung fibrosis via stimulation of transforming growth factor-β1, -β2, and -β3 tanslation[J]. Am J Respir Cell Mol Biol,2019,60(2): 221-231.DOI: 10.1165/rcmb.2018-0028OC.
|
[9] |
PaliwalS,ShiJH,DhruU,et al.P311 binds to the latency associated protein and downregulates the expression of TGF-β1 and TGF-β2[J].Biochem Biophys Res Commun,2004,315(4):1104-1109.DOI: 10.1016/j.bbrc.2004.01.171.
|
[10] |
YaoZH, LiHS, HeWF, et al. P311 accelerates skin wound reepithelialization by promoting epidermal stem cell migration through RhoA and Rac1 activation[J]. Stem Cells Dev,2017, 26(6): 451-460.DOI: 10.1089/scd.2016.0249.
|
[11] |
TanJL,PengX,LuoGX,et al.Investigating the role of P311 in the hypertrophic scar[J].PLoS One,2010,5(4):e9995.DOI: 10.1371/journal.pone.0009995.
|
[12] |
ThulabanduV,ChenD,AtitRP.Dermal fibroblast in cutaneous development and healing[J].Wiley Interdiscip Rev Dev Biol,2018,7(2): 10.1002/wdev.307.DOI: 10.1002/wdev.307.
|
[13] |
HongYK, ChangYH, LinYC, et al. Inflammation in wound healing and pathological scarring[J]. Adv Wound Care (New Rochelle),2023, 12(5): 288-300.DOI: 10.1089/wound.2021.0161.
|
[14] |
KarppinenSM,HeljasvaaraR,GullbergD,et al.Toward understanding scarless skin wound healing and pathological scarring[J].F1000Res,2019,8: F1000 Faculty Rev-787.DOI: 10.12688/f1000research.18293.1.
|
[15] |
WangZC, ZhaoWY, CaoYY, et al. The roles of inflammation in keloid and hypertrophic scars[J]. Front Immunol,2020, 11: 603187.DOI: 10.3389/fimmu.2020.603187.
|
[16] |
ElAttarY,MouradB,AlngomyHA,et al.Study of interleukin-1 beta expression in acne vulgaris and acne scars[J].J Cosmet Dermatol,2022,21(10):4864-4870.DOI: 10.1111/jocd.14852.
|
[17] |
DengCC,HuYF,ZhuDH,et al.Single-cell RNA-seq reveals fibroblast heterogeneity and increased mesenchymal fibroblasts in human fibrotic skin diseases[J].Nat Commun,2021,12(1):3709.DOI: 10.1038/s41467-021-24110-y.
|
[18] |
KakinumaT,KagimotoM,KanekoA,et al.Prevention and management of hypertrophic scars after laparoscopic surgery using silicone gel sheets: a pilot study[J].J Int Med Res,2022,50(8):3000605221107597.DOI: 10.1177/03000605221107597.
|
[19] |
FrangogiannisN.Transforming growth factor-β in tissue fibrosis[J].J Exp Med,2020,217(3):e20190103.DOI: 10.1084/jem.20190103.
|
[20] |
MascharakS,desJardins-ParkHE,DavittMF,et al.Preventing Engrailed-1 activation in fibroblasts yields wound regeneration without scarring[J].Science,2021,372(6540):eaba2374.DOI: 10.1126/science.aba2374.
|
[21] |
BrewerCM,NelsonBR,WakenightP,et al.Adaptations in Hippo-Yap signaling and myofibroblast fate underlie scar-free ear appendage wound healing in spiny mice[J].Dev Cell,2021,56(19):2722-2740.e6.DOI: 10.1016/j.devcel.2021.09.008.
|
[22] |
WeiZY, HanC, LiHS, et al. Molecular mechanism of mesenchyme homeobox 1 in transforming growth factor β1-induced P311 gene transcription in fibrosis[J]. Front Mol Biosci,2020, 7: 59.DOI: 10.3389/fmolb.2020.00059.
|
[23] |
薛晓怡,冯铁男,王群群,等.P311蛋白与金属硫蛋白ⅡA相互作用位点的计算机预测[J].上海大学学报(自然科学版),2011,17(6):728-733.DOI: 10.3969/j.issn.1007-2861.2011.06.008.
|
[24] |
YueMM,LvKS,MeredithSC,et al.Novel RNA-binding protein P311 binds eukaryotic translation initiation factor 3 subunit b (eIF3b) to promote translation of transforming growth factor β1-3 (TGF-β1-3)[J].J Biol Chem,2014,289(49):33971-33983.DOI: 10.1074/jbc.M114.609495.
|
[25] |
卫志远.TGF-β1调控成纤维细胞P311转录的机制研究[D].重庆:陆军军医大学,2020. |
[26] |
袁顺宗,彭旭,马兵,等.利用免疫共沉淀验证HT036与P311间的相互作用[J].第三军医大学学报,2006,28(24):2400-2402.DOI: 10.3321/j.issn:1000-5404.2006.24.003.
|
[27] |
周小海,刘宇,胡乃月,等.神经元蛋白3.1结合蛋白的筛选与鉴定[J].生物化学与生物物理进展,2010,37(12):1303-1312.DOI: 10.3724/SP.J.1206.2010.00283.
|
[28] |
SuCT, UrbanZ. LTBP4 in health and disease[J]. Genes(Basel),2021, 12(6):795.DOI: 10.3390/genes12060795.
|
[29] |
TanJL,LuoGX,WuJ.The biological roles of ITGB4BP and its potential effect on fibrosis[J].Int J Burns Trauma,2011,1(1):51-55.
|
[30] |
MarconiGD, FonticoliL, RajanTS, et al. Epithelial-mesenchymal transition (EMT): the type-2 EMT in wound healing, tissue regeneration and organ fibrosis[J]. Cells,2021, 10(7): 1587.DOI: 10.3390/cells10071587.
|
[31] |
JiangDS,ChristS,Correa-GallegosD,et al.Injury triggers fascia fibroblast collective cell migration to drive scar formation through N-cadherin[J].Nat Commun,2020,11(1):5653.DOI: 10.1038/s41467-020-19425-1.
|
[32] |
SoundararajanM, KannanS. Fibroblasts and mesenchymal stem cells: two sides of the same coin?[J]. J Cell Physiol,2018, 233(12): 9099-9109.DOI: 10.1002/jcp.26860.
|
[33] |
BuechlerMB,PradhanRN,KrishnamurtyAT,et al.Cross-tissue organization of the fibroblast lineage[J].Nature,2021,593(7860):575-579.DOI: 10.1038/s41586-021-03549-5.
|
[34] |
PanD,ZheXN,JakkarajuS,et al.P311 induces a TGF-beta1-independent, nonfibrogenic myofibroblast phenotype[J].J Clin Invest,2002,110(9):1349-1358.DOI: 10.1172/JCI15614.
|
[35] |
张路,李海胜,姚智慧,等.P311和转化生长因子β1相互作用及其对小鼠成纤维细胞功能的影响[J].中华烧伤杂志,2016,32(4):208-215.DOI: 10.3760/cma.j.issn.1009-2587.2016.04.005.
|
[36] |
LiuJQ,ZhaoB,ZhuHY,et al.Wnt4 negatively regulates the TGF-β1-induced human dermal fibroblast-to-myofibroblast transition via targeting Smad3 and ERK[J].Cell Tissue Res,2020,379(3):537-548.DOI: 10.1007/s00441-019-03110-x.
|
[37] |
NunezS,YoungC,AdebayoO,et al.P311, a novel intrinsically disordered protein, regulates adipocyte development[J].Biochem Biophys Res Commun,2019,515(1):234-240.DOI: 10.1016/j.bbrc.2019.05.105.
|
[38] |
LiHS,YaoZH,HeWF,et al.P311 induces the transdifferentiation of epidermal stem cells to myofibroblast-like cells by stimulating transforming growth factor β1 expression[J].Stem Cell Res Ther,2016,7(1):175.DOI: 10.1186/s13287-016-0421-1.
|
[39] |
ZhouDJ,LiuTF, WangS, et al. Effects of IL-1β and TNF-α on the expression of P311 in vascular endothelial cells and wound healing in mice[J]. Front Physiol,2020, 11: 545008.DOI: 10.3389/fphys.2020.545008.
|
[40] |
WangS, ZhangXR, QianW, et al. P311 deficiency leads to attenuated angiogenesis in cutaneous wound healing[J]. Front Physiol,2017, 8: 1004.DOI: 10.3389/fphys.2017.01004.
|
[41] |
XuM, XuHH, LinY, et al. LECT2, a ligand for Tie1, plays a crucial role in liver fibrogenesis[J]. Cell,2019, 178(6): 1478-1492.e20.DOI: 10.1016/j.cell.2019.07.021.
|
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