TRMT10A dysfunction is associated with abnormalities in glucose homeostasis, short stature and microcephaly

被引:77
作者
Gillis, David [1 ]
Krishnamohan, Aiswarya [2 ,3 ]
Yaacov, Barak [4 ]
Shaag, Avraham [4 ]
Jackman, Jane E. [2 ,3 ]
Elpeleg, Orly [4 ]
机构
[1] Hadassah Hebrew Univ, Dept Pediat, Med Ctr, IL-91120 Jerusalem, Israel
[2] Ohio State Univ, Dept Chem & Biochem, Ohio State Biochem Program, Columbus, OH 43210 USA
[3] Ohio State Univ, Ctr RNA Biol, Columbus, OH 43210 USA
[4] Hadassah Hebrew Univ, Monique & Jacques Roboh Dept Genet Res, Med Ctr, IL-91120 Jerusalem, Israel
关键词
HUMAN MITOCHONDRIAL TRNA(LYS); TRANSFER-RNA SUBSTRATE; CONGENITAL HYPERINSULINISM; METHYLTRANSFERASE TRM10; YEAST; IDENTIFICATION; RECOGNITION; CHILDREN; REVEALS; INFANCY;
D O I
10.1136/jmedgenet-2014-102282
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Background Trm10 is a tRNA m(1)G(9) methyltransferase, which in yeast modifies 12 different tRNA species, yet is considered non-essential for viability under standard growth conditions. In humans, there are three Trm10 orthologs, one mitochondrial and two presumed cytoplasmic. A nonsense mutation in one of the cytoplasmic orthologs (TRMT10A) has recently been associated with microcephaly, intellectual disability, short stature and adolescent onset diabetes. Methods and results The subjects were three patients who suffered from microcephaly, intellectual disability, short stature, delayed puberty, seizures and disturbed glucose metabolism, mainly hyperinsulinaemic hypoglycaemia. A homozygous Gly206Arg (G206R) mutation in the TRMT10A gene was identified using whole exome sequencing. The mutation segregated in the family and was absent from large control cohorts. Determination of the methylation activity of the expressed wild-type (WT) and variant TRMT10A enzymes with transcripts of P-32 -tRNA(GCC)(Gly) as a substrate revealed a striking defect (<0.1% of WT activity) for the variant enzyme. The binding affinity of the G206R variant enzyme to tRNA, determined by fluorescence anisotropy, was similar to that of the WT enzyme. Conclusions The completely abolished m1G9 methyltransferase activity of the mutant enzyme is likely due to significant defects in its ability to bind the methyl donor S-adenosyl methionine. We propose that TRMT10A deficiency accounts for abnormalities in glucose homeostasis initially manifesting both ketotic and non-ketotic hypoglycaemic events with transition to diabetes in adolescence, perhaps as a consequence of accelerated beta cell apoptosis. The seizure disorder and intellectual disability are probably secondary to mutant gene expression in neuronal tissue.
引用
收藏
页码:581 / 586
页数:6
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