Chano Tokuhiro, Saji Masashi, Inoue Hirokazu, Minami Kahori, Kobayashi Toshiyuki, Hino Okio, Okabe Hidetoshi
Department of Clinical Laboratory Medicine, Shiga University of Medical Science, Shiga 520-2192, Japan.
Int J Mol Med. 2006 Sep;18(3):425-32.
RB1-inducible coiled-coil 1 (RB1CC1) is a novel tumor suppressor implicated in the regulation of RB1 expression. It is abundant in post-mitotic neuromuscular cells, which are matured and enlarged, but scarce in smaller leukocytes, indicating an association between RB1CC1 status and cell size. To clarify whether RB1CC1 is involved in cell size control, we investigated the contribution of RB1CC1 to the TSC-mTOR pathway, which plays an important role in the control through translational regulation. RNAi-mediated knockdown of RB1CC1 reduced the activation of mTOR and S6K as well as the size of HEK293 and C2C12 cells. Such knockdown also suppressed RB1 expression and the population of G1-phase cells. Exogenous expression of RB1CC1 maintained S6K activity and cell size, and decreased TSC1/hamartin contents under nutritionally starved conditions, which usually inhibit the mTOR-S6K pathway. Furthermore, RB1CC1 interfered with and degraded TSC1 through the ubiquitin-proteasomal pathway. A lentiviral RNAi for RB1CC1 reduced the size of mouse leg muscles. These findings suggest that RB1CC1 is required to maintain both RB1 expression and mTOR activity. The activity of mTOR was supported by RB1CC1 through TSC1 degradation. RB1CC1 preserved cell size without cell cycle progression especially in neuromuscular tissues, and the abundance contributed to the non-proliferating enlarged cell phenotype.
RB1诱导性卷曲螺旋蛋白1(RB1CC1)是一种新的肿瘤抑制因子,与RB1表达的调控有关。它在有丝分裂后的神经肌肉细胞中大量存在,这些细胞成熟且体积增大,但在较小的白细胞中含量稀少,这表明RB1CC1状态与细胞大小之间存在关联。为了阐明RB1CC1是否参与细胞大小的控制,我们研究了RB1CC1对TSC - mTOR通路的作用,该通路在通过翻译调控进行的控制中起重要作用。RNAi介导的RB1CC1敲低降低了mTOR和S6K的活性以及HEK293和C2C12细胞的大小。这种敲低还抑制了RB1表达和G1期细胞群体。在营养饥饿条件下,RB1CC1的外源性表达维持了S6K活性和细胞大小,并降低了TSC1/错构瘤蛋白的含量,而营养饥饿通常会抑制mTOR - S6K通路。此外,RB1CC1通过泛素 - 蛋白酶体途径干扰并降解TSC1。针对RB1CC1的慢病毒RNAi减小了小鼠腿部肌肉的大小。这些发现表明,维持RB1表达和mTOR活性都需要RB1CC1。RB1CC1通过降解TSC1来支持mTOR的活性。RB1CC1在不进行细胞周期进程的情况下维持细胞大小,尤其是在神经肌肉组织中,其丰度促成了非增殖性增大细胞表型。