Scott I C, Anson-Cartwright L, Riley P, Reda D, Cross J C
Program in Development and Fetal Health, Samuel Lunenfeld Research Institute, Mount Sinai Hospital, Toronto, Ontario Canada.
Mol Cell Biol. 2000 Jan;20(2):530-41. doi: 10.1128/MCB.20.2.530-541.2000.
The basic helix-loop-helix (bHLH) transcription factor genes Hand1 and Mash2 are essential for placental development in mice. Hand1 promotes differentiation of trophoblast giant cells, whereas Mash2 is required for the maintenance of giant cell precursors, and its overexpression prevents giant cell differentiation. We found that Hand1 expression and Mash2 expression overlap in the ectoplacental cone and spongiotrophoblast, layers of the placenta that contain the giant cell precursors, indicating that the antagonistic activities of Hand1 and Mash2 must be coordinated. MASH2 and HAND1 both heterodimerize with E factors, bHLH proteins that are the DNA-binding partners for most class B bHLH factors and which are also expressed in the ectoplacental cone and spongiotrophoblast. In vitro, HAND1 could antagonize MASH2 function by competing for E-factor binding. However, the Hand1 mutant phenotype cannot be solely explained by ectopic activity of MASH2, as the Hand1 mutant phenotype was not altered by further mutation of Mash2. Interestingly, expression of E-factor genes (ITF2 and ALF1) was down-regulated in the trophoblast lineage prior to giant cell differentiation. Therefore, suppression of MASH2 function, required to allow giant cell differentiation, may occur in vivo by loss of its E-factor partner due to loss of its expression and/or competition from HAND1. In giant cells, where E-factor expression was not detected, HAND1 presumably associates with a different bHLH partner. This may account for the distinct functions of HAND1 in giant cells and their precursors. We conclude that development of the trophoblast lineage is regulated by the interacting functions of HAND1, MASH2, and their cofactors.
基本螺旋-环-螺旋(bHLH)转录因子基因Hand1和Mash2对小鼠胎盘发育至关重要。Hand1促进滋养层巨细胞的分化,而Mash2是维持巨细胞前体所必需的,其过表达会阻止巨细胞分化。我们发现Hand1表达和Mash2表达在外胎盘锥体和海绵滋养层中重叠,这两层胎盘包含巨细胞前体,表明Hand1和Mash2的拮抗活性必须得到协调。MASH2和HAND1都与E因子形成异二聚体,E因子是大多数B类bHLH因子的DNA结合伙伴,也在外胎盘锥体和海绵滋养层中表达。在体外,HAND1可通过竞争E因子结合来拮抗MASH2的功能。然而,Hand1突变体表型不能仅由MASH2的异位活性来解释,因为Mash2的进一步突变并未改变Hand1突变体表型。有趣的是,在巨细胞分化之前,滋养层谱系中E因子基因(ITF2和ALF1)的表达下调。因此,允许巨细胞分化所需的MASH2功能抑制可能在体内通过其E因子伙伴的缺失而发生,这是由于其表达丧失和/或来自HAND1的竞争。在未检测到E因子表达的巨细胞中,HAND1可能与不同的bHLH伙伴结合。这可能解释了HAND1在巨细胞及其前体中的不同功能。我们得出结论,滋养层谱系的发育受HAND1、MASH2及其辅助因子相互作用功能的调节。