Cancer Genetics Program, Beth Israel Deaconess Cancer Center, Departments of Medicine and Pathology, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA 02115, USA.
Cell Stem Cell. 2012 Mar 2;10(3):284-98. doi: 10.1016/j.stem.2012.02.004.
Transcription factors required for formation of embryonic tissues often maintain their expression in adult stem cell populations, but whether their function remains equivalent is not clear. Here we demonstrate critical and distinct roles for Sall4 in development of embryonic germ cells and differentiation of postnatal spermatogonial progenitor cells (SPCs). In differentiating SPCs, Sall4 levels transiently increase and Sall4 physically interacts with Plzf, a transcription factor exclusively required for adult stem cell maintenance. Mechanistically, Sall4 sequesters Plzf to noncognate chromatin domains to induce expression of Kit, a target of Plzf-mediated repression required for differentiation. Plzf in turn antagonizes Sall4 function by displacing Sall4 from cognate chromatin to induce Sall1 expression. Taken together, these data suggest that transcription factors required for embryonic tissue development postnatally take on distinct roles through interaction with opposing factors, which hence define properties of the adult stem cell compartment.
在形成胚胎组织的转录因子中,通常在成年干细胞群体中维持其表达,但它们的功能是否仍然相同尚不清楚。在这里,我们证明了 Sall4 在胚胎生殖细胞的发育和出生后精原干细胞祖细胞(SPC)的分化中起着关键和不同的作用。在分化的 SPC 中,Sall4 水平短暂增加,并且 Sall4 与 Plzf 物理相互作用,Plzf 是维持成年干细胞所必需的转录因子。从机制上讲,Sall4 将 Plzf 隔离到非同源染色质域,以诱导 Kit 的表达,Kit 是 Plzf 介导的抑制所必需的分化靶标。Plzf 反过来通过将 Sall4 从同源染色质置换出来,从而诱导 Sall1 的表达来拮抗 Sall4 的功能。总之,这些数据表明,在胚胎组织发育后,需要的转录因子通过与相反的因子相互作用而发挥不同的作用,从而定义了成年干细胞区室的特性。