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非洲爪蟾Max的两种不同同源物在早期发育过程中的表达。

Expression of two distinct homologues of Xenopus Max during early development.

作者信息

King M W, Blackwood E M, Eisenman R N

机构信息

Department of Biochemistry and Molecular Biology, Indiana University School of Medicine, Terre Haute Center for Medical Sciences 47809.

出版信息

Cell Growth Differ. 1993 Feb;4(2):85-92.

PMID:8494787
Abstract

The Max protein belongs to the basic region-helix-loop-helix-leucine zipper family of transcriptional regulators. Max heterodimerizes with Myc family proteins to form sequence-specific DNA-binding complexes. In order to elucidate the potential role of Myc and Max during amphibian embryogenesis, we have isolated and analyzed the expression of two Xenopus Max complementary DNAs: XMax1 and XMax2. Comparison of XMax1 and XMax2 with their mammalian counterparts demonstrates a strikingly high degree of conservation at both the nucleotide and amino acid levels, with the exception of a 24-residue deletion in both XMax proteins within their COOH termini. In addition, the two Xenopus Max proteins differ in that XMax2 contains a unique 27-amino acid insertion that interrupts the COOH-terminal end of the zipper domain; XMax1 lacks this insertion. Despite these differences, both XMax1 and XMax2 can form complexes with either Xenopus or human c-Myc proteins. Analysis of XMax expression during embryogenesis reveals that both mRNA and protein are expressed throughout early development, including the egg, 32-cell stage, and midblastula transition. Although the expression of XMax1 RNA appears to predominate at all stages examined, the ratios of XMax1 to XMax2 protein vary during development as well as between different tissue culture cell lines, suggesting a potential for cell type-specific regulation. Our results demonstrate the presence of Xenopus Max throughout frog development, raising the possibility that Myc and Max could function as a complex even during early embryogenesis.

摘要

Max蛋白属于转录调节因子的碱性区域-螺旋-环-螺旋-亮氨酸拉链家族。Max与Myc家族蛋白形成异源二聚体,以形成序列特异性DNA结合复合物。为了阐明Myc和Max在两栖动物胚胎发育过程中的潜在作用,我们分离并分析了非洲爪蟾的两种Max互补DNA(cDNA)的表达:XMax1和XMax2。将XMax1和XMax2与其哺乳动物对应物进行比较,发现在核苷酸和氨基酸水平上都具有高度的保守性,但两种XMax蛋白在其COOH末端都有一个24个残基的缺失。此外,两种非洲爪蟾Max蛋白的不同之处在于,XMax2包含一个独特的27个氨基酸的插入序列,该序列中断了拉链结构域的COOH末端;XMax1没有这个插入序列。尽管存在这些差异,但XMax1和XMax2都可以与非洲爪蟾或人类的c-Myc蛋白形成复合物。对胚胎发育过程中XMax表达的分析表明,mRNA和蛋白质在整个早期发育阶段都有表达,包括卵子、32细胞期和囊胚中期转变。虽然在所有检测阶段XMax1 RNA的表达似乎占主导地位,但XMax1与XMax2蛋白的比例在发育过程中以及不同的组织培养细胞系之间都有所不同,这表明存在细胞类型特异性调节的可能性。我们的结果表明,非洲爪蟾Max在青蛙发育过程中全程存在,这增加了Myc和Max即使在早期胚胎发育过程中也可能作为复合物发挥作用的可能性。

相似文献

1
Expression of two distinct homologues of Xenopus Max during early development.非洲爪蟾Max的两种不同同源物在早期发育过程中的表达。
Cell Growth Differ. 1993 Feb;4(2):85-92.
2
Analysis of a variant Max sequence expressed in Xenopus laevis.对非洲爪蟾中表达的变异Max序列的分析。
Oncogene. 1994 Jan;9(1):33-8.
3
Evolutionary relationships and functional conservation among vertebrate Max-associated proteins: the zebra fish homolog of Mxi1.脊椎动物Max相关蛋白之间的进化关系和功能保守性:Mxi1的斑马鱼同源物
Oncogene. 1994 Nov;9(11):3167-77.
4
Determination of sequences responsible for the differential regulation of Myc function by delta Max and Max.确定负责由δMax和Max对Myc功能进行差异调节的序列。
Oncogene. 1995 Aug 3;11(3):553-60.
5
Overexpression of Mxi1 inhibits the induction of the human ornithine decarboxylase gene by the Myc/Max protein complex.Mxi1的过表达抑制了Myc/Max蛋白复合物对人鸟氨酸脱羧酶基因的诱导作用。
Oncogene. 1996 Feb 1;12(3):621-9.
6
The basic region/helix-loop-helix/leucine zipper domain of Myc proto-oncoproteins: function and regulation.Myc原癌蛋白的碱性区域/螺旋-环-螺旋/亮氨酸拉链结构域:功能与调控
Oncogene. 1999 May 13;18(19):2955-66. doi: 10.1038/sj.onc.1202750.
7
Lack of correlation between N-myc and MAX expression in neuroblastoma tumors and in cell lines: implication for N-myc-MAX complex formation.神经母细胞瘤肿瘤及细胞系中N-myc与MAX表达之间缺乏相关性:对N-myc-MAX复合物形成的影响。
Cancer Res. 1994 Apr 15;54(8):2251-5.
8
Mmip1: a novel leucine zipper protein that reverses the suppressive effects of Mad family members on c-myc.Mmip1:一种新型亮氨酸拉链蛋白,可逆转Mad家族成员对c-myc的抑制作用。
Oncogene. 1998 Mar 5;16(9):1149-59. doi: 10.1038/sj.onc.1201634.
9
Both the helix-loop-helix and the leucine zipper motifs of c-Myc contribute to its dimerization specificity with Max.c-Myc的螺旋-环-螺旋基序和亮氨酸拉链基序都有助于其与Max的二聚化特异性。
Oncogene. 1993 Jan;8(1):125-32.
10
Analysis of c-Myc and Max binding to the c-myc promoter: evidence that autosuppression occurs via an indirect mechanism.c-Myc与Max结合至c-myc启动子的分析:通过间接机制发生自动抑制的证据。
Oncogene. 1995 Mar 16;10(6):1249-55.

引用本文的文献

1
Premetazoan ancestry of the Myc-Max network.Myc-Max 网络的前动物祖源。
Mol Biol Evol. 2011 Oct;28(10):2961-71. doi: 10.1093/molbev/msr132. Epub 2011 May 13.
2
N-myc can functionally replace c-myc in murine development, cellular growth, and differentiation.N - 原癌基因在小鼠发育、细胞生长和分化过程中可在功能上替代c - 原癌基因。
Genes Dev. 2000 Jun 1;14(11):1390-9.
3
Drosophila Myc is oncogenic in mammalian cells and plays a role in the diminutive phenotype.果蝇Myc在哺乳动物细胞中具有致癌性,并在矮小表型中发挥作用。
Proc Natl Acad Sci U S A. 1997 Feb 18;94(4):1235-40. doi: 10.1073/pnas.94.4.1235.
4
A minimal regulatory region maintains constitutive expression of the max gene.一个最小调控区域维持max基因的组成型表达。
Mol Cell Biol. 1997 Mar;17(3):1037-48. doi: 10.1128/MCB.17.3.1037.
5
Variant Max protein, derived by alternative splicing, associates with c-Myc in vivo and inhibits transactivation.通过可变剪接产生的变体Max蛋白在体内与c-Myc结合并抑制反式激活。
Mol Cell Biol. 1995 Dec;15(12):6702-9. doi: 10.1128/MCB.15.12.6702.
6
Novel HOX, POU and FKH genes expressed during bFGF-induced mesodermal differentiation in Xenopus.非洲爪蟾中碱性成纤维细胞生长因子诱导中胚层分化过程中表达的新型HOX、POU和FKH基因。
Nucleic Acids Res. 1994 Sep 25;22(19):3990-6. doi: 10.1093/nar/22.19.3990.