Nishimura Motohiro, Fukushima-Nakase Yoko, Fujita Yasuko, Nakao Mitsushige, Toda Shogo, Kitamura Nobuo, Abe Tatsuo, Okuda Tsukasa
Department of Hygiene, Kyoto Prefectural University of Medicine, Kawaramachi-Hirokoji, Kamigyo-ku, Kyoto 602-8566, Japan.
Blood. 2004 Jan 15;103(2):562-70. doi: 10.1182/blood-2003-06-2109. Epub 2003 Sep 22.
AML1/Runx1 is a frequent target of leukemia-associated gene aberration, and it encodes a transcription factor essential for definitive hematopoiesis. We previously reported that the AML1 molecules with trans-activation subdomains retained can rescue in vitro hematopoietic defects of AML1-deficient mouse embryonic stem (ES) cells when expressed by using a knock-in approach. Extending this notion to in vivo conditions, we found that the knock-in ES cell clones with AML1 mutants, which retain trans-activation subdomains but lack C-terminal repression subdomains including the conserved VWRPY motif, contribute to hematopoietic tissues in chimera mice. We also found that germline mice homozygous for the mutated AML1 allele, which lacks the VWRPY motif, exhibit a minimal effect on hematopoietic development, as was observed in control knock-in mice with full-length AML1. On the other hand, reduced cell numbers and deviant CD4 expression were observed during early T-lymphoid ontogeny in the VWRPY-deficient mice, whereas the contribution to the thymus by the corresponding ES cell clones was inadequate. These findings demonstrate that AML1 with its trans-activating subdomains is essential and sufficient for hematopoietic development in the context of the entire mouse. In addition, its trans-repression activity, depending on the C-terminal VWRPY motif, plays a role in early thymocyte development.
AML1/Runx1是白血病相关基因畸变的常见靶点,它编码一种对确定性造血至关重要的转录因子。我们之前报道过,带有反式激活亚结构域的AML1分子在通过敲入方法表达时,能够挽救AML1缺陷型小鼠胚胎干细胞的体外造血缺陷。将这一概念扩展到体内条件下,我们发现带有AML1突变体的敲入ES细胞克隆,这些突变体保留了反式激活亚结构域,但缺少包括保守的VWRPY基序在内的C端抑制亚结构域,能够在嵌合小鼠中形成造血组织。我们还发现,纯合缺失VWRPY基序的突变AML1等位基因的种系小鼠,对造血发育的影响极小,这与全长AML1的对照敲入小鼠的情况相同。另一方面,在VWRPY缺陷型小鼠的早期T淋巴细胞发育过程中,观察到细胞数量减少和CD4表达异常,而相应的ES细胞克隆对胸腺的贡献不足。这些发现表明,具有反式激活亚结构域的AML1对于整个小鼠体内的造血发育是必不可少且足够的。此外,其依赖于C端VWRPY基序的反式抑制活性在早期胸腺细胞发育中发挥作用。