Research advances on zinc finger protein ZBTB38 regulating growth and development

ZHAO Qian-qian, BAN Bo, SHAO Qian

Chinese Journal of Child Health Care ›› 2018, Vol. 26 ›› Issue (1) : 44-47.

PDF(505 KB)
PDF(505 KB)
Chinese Journal of Child Health Care ›› 2018, Vol. 26 ›› Issue (1) : 44-47. DOI: 10.11852/zgetbjzz2018-26-01-12

Research advances on zinc finger protein ZBTB38 regulating growth and development

  • ZHAO Qian-qian1, BAN Bo2, SHAO Qian3
Author information +
History +

Abstract

Zinc finger protein ZBTB38 is a new member of the ZBTB zinc finger protein subfamily,homologous to known BCL6 and PLZF.Through the study,scholars have found that ZBTB38 plays an important role in growth and development,tumorigenesis,cytoskeletal tissue,stem cell homeostasis and transcription regulation,hematopoiesis,chromatin remodeling and protein degradation.Abnormal expression or dysfunction of ZBTB38 can lead to individual developmental disorders and is closely related to the pathophysiological process of tumor,prion disease and other major diseases.With the rapid development of technology,especially single nucleotide polymorphism,genomic hybridization,genome sequencing research,ZBTB38 gene was found to have strong correlation with human height.Zinc finger protein ZBTB38 regulating growth and development is reviewed in this paper.

Key words

zinc finger protein / ZBTB38 / growth and development

Cite this article

Download Citations
ZHAO Qian-qian, BAN Bo, SHAO Qian. Research advances on zinc finger protein ZBTB38 regulating growth and development[J]. Chinese Journal of Child Health Care. 2018, 26(1): 44-47 https://doi.org/10.11852/zgetbjzz2018-26-01-12

References

[1] Lee SU.POK/ZBTB proteins:an emerging family of proteins that regulate lymphoid development and function[J].Immunol Rev,2012,247(1):107-119.
[2] Zollman S,Godt D,Privé GG,et al.The BTB domain,found primarily in zinc finger proteins,defines an evolutionarily conserved family that includes several developmentally regulated genes in Drosophila[J].Proc Natl Acad Sci USA,1994,91(22):10717-10721.
[3] Sasai N,Matsuda E,Sarashina E,et al.Identification of a novel BTB-zinc finger transcriptional repressor,CIBZ,that interacts with CtBP corepressor[J].Genes to Cells,2005,10(9):871-885.
[4] Costoya JA.Functional analysis of the role of POK transcriptional repressors[J].Brief Funct Genomic Proteomic,2007,6(1):8-18.
[5] Oikawa Y,Matsuda E,Nishii T,et al.Down-regulation of CIBZ,a novel substrate of caspase-3,induces apoptosis[J].JBC,2008,283(21):14242-14247.
[6] Hong KW,Shin YB,Jin HS,et al.Alternative splicing of human height-related zinc finger and BTB domain-containing 38 gene through Alu exonization[J].Biochem Genet,2011,49(5-6):283-291.
[7] 孟彩凤,周颖.DNA甲基化对植物生长发育的调控研究[J].安徽农学通报,2015,21(10):29-32.
[8] Clayton P,Bonnemaire M,Dutailly P,et al.Characterizing short stature by insulin-like growth factor axis status and genetic associations:results from the prospective,cross-sectional,epidemiogenetic EPIGROW study[J].J Clin Endocrinol Metab,2013,98(6):E1122-E1130.
[9] Zhang S,Zhai G,Wang J,et al.IGF-II expression and methylation in small for gestational age infants[J].J Pediatr Endocrinol Metab,2015,28(5-6):613-618.
[10] Nawathe AR,Christian M,Kim SH,et al.Insulin-like growth factor axis in pregnancies affected by fetal growth disorders[J].Clin Epigenetics,2016,8:11.
[11] Begemann M,Zirn B,Santen G,et al.Paternally inherited IGF2 mutation and growth restriction[J].NEJM,2015,373 (4):349-356.
[12] Kiefer H,Chatail-Hermitte F,Ravassard P,et al.ZENON,a novel POZ Kruppel-like DNA binding protein associated with differentiation and/or survival of late postmitotic neurons[J].Mol Cell Biol,2005,25(5):1713-1729.
[13] Filion GJ,Zhenilo S,Salozhin S,et al.A family of human zinc finger proteins that bind methylated DNA and repress transcription[J].Mol Cell Biol,2006,26(1):169-181.
[14] 丁健,王飞,金景姬.表观遗传之染色质重塑[J].生物化学与生物物理进展,2015,42(11):994-1002.
[15] Laity JH,Lee BM.Zinc finger proteins:new insights into structural and functional diversity[J].Curr Opin Struct Biol,2001,11(1):39-46.
[16] 袁意,杨玉.特发性矮小基因研究进展[J].南昌大学学报:医学版,2013,58(1):104-106.
[17] 于萍,朱惠娟,潘慧.生长激素-胰岛素样生长因子-1轴相关单基因缺陷性矮小症的研究进展[J].中国卫生检验杂志,2015,25(12):2054-2056.
[18] Gudbjartsson DF,Walters GB,Thorleifsson G,et al.Many sequence variants affecting diversity of adult human height[J].Nat Genetics,2008,40(5):609-615.
[19] Lettre G,Jackson AU,Gieger C,et al.Identification of ten loci associated with height highlights new biological pathways in human growth[J].Nat Genetics,2008,40(5):584-591.
[20] Weedon MN,Lango H,Lindgren CM,et al.Genome-wide association analysis identifies 20 loci that influence adult height[J].Nat Genetics,2008,40(5):575-583.
[21] Kim JJ,Lee HI,Park T,et al.Identification of 15 loci influencing height in a Korean population[J].J Hum Genet,2010,55(1):27-31.
[22] Wang Q,Liu DY,Yang LQ,et al.The epidemic characteristics of short stature in school students[J].Ital J Pediatr,2015,41(99):2-6.
[23] Zhao J,Li M,Bradfield JP,et al.The role of height-associated loci identified in genome wide association studies in the determination of pediatric stature[J].BMC,2010,11(5):96-100.
[24] Wang Y,Wang Z,Teng Y,et al.An SNP of the ZBTB38 gene is associated with idiopathic short stature in the Chinese Han population[J].Clin Endocrinol(Oxf),2013,79(3):402-408.
[25] Clayton P,Bonnemaire M,Dutailly P,et al.Characterizing short stature by insulin-like growth factor axis status and genetic associations:results from the prospective,cross-sectional,epidemiogenetic EPIGROW study[J].J Clin Endocrinol Metab,2013,98(6):E1122-E1130.
PDF(505 KB)

Accesses

Citation

Detail

Sections
Recommended

/