Department of Structural Chemistry, University of Göttingen, 37075 Göttingen, Germany.
Nucleic Acids Res. 2012 Sep 1;40(17):8733-42. doi: 10.1093/nar/gks614. Epub 2012 Jun 26.
Mutations in the gene of human RNase T2 are associated with white matter disease of the human brain. Although brain abnormalities (bilateral temporal lobe cysts and multifocal white matter lesions) and clinical symptoms (psychomotor impairments, spasticity and epilepsy) are well characterized, the pathomechanism of RNase T2 deficiency remains unclear. RNase T2 is the only member of the Rh/T2/S family of acidic hydrolases in humans. In recent years, new functions such as tumor suppressing properties of RNase T2 have been reported that are independent of its catalytic activity. We determined the X-ray structure of human RNase T2 at 1.6 Å resolution. The α+β core fold shows high similarity to those of known T2 RNase structures from plants, while, in contrast, the external loop regions show distinct structural differences. The catalytic features of RNase T2 in presence of bivalent cations were analyzed and the structural consequences of known clinical mutations were investigated. Our data provide further insight into the function of human RNase T2 and may prove useful in understanding its mode of action independent of its enzymatic activity.
人类 RNase T2 基因的突变与人类大脑的白质疾病有关。尽管大脑异常(双侧颞叶囊肿和多灶性白质病变)和临床症状(精神运动障碍、痉挛和癫痫)已得到很好的描述,但 RNase T2 缺乏的发病机制仍不清楚。RNase T2 是人类 Rh/T2/S 酸性水解酶家族中唯一的成员。近年来,有报道称 RNase T2 具有独立于其催化活性的抗肿瘤特性等新功能。我们以 1.6Å 的分辨率确定了人 RNase T2 的 X 射线结构。α+β 核心折叠与来自植物的已知 T2 RNase 结构高度相似,而外部环区则显示出明显的结构差异。分析了 RNase T2 在二价阳离子存在下的催化特征,并研究了已知临床突变的结构后果。我们的数据进一步深入了解了人 RNase T2 的功能,并且可能有助于理解其独立于酶活性的作用模式。