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在PRMT3基因缺陷型小鼠中,核糖体蛋白rpS2发生低甲基化。

Ribosomal protein rpS2 is hypomethylated in PRMT3-deficient mice.

作者信息

Swiercz Rafal, Cheng Donghang, Kim Daehoon, Bedford Mark T

机构信息

University of Texas M.D. Anderson Cancer Center, Science Park-Research Division, Smithville, Texas 78957, USA.

出版信息

J Biol Chem. 2007 Jun 8;282(23):16917-23. doi: 10.1074/jbc.M609778200. Epub 2007 Apr 17.

Abstract

PRMT3 is a type I arginine methyltransferase that resides in the cytoplasm. A large proportion of this cystosolic PRMT3 is found associated with ribosomes. It is tethered to the ribosomes through its interaction with rpS2, which is also its substrate. Here we show that mouse embryos with a targeted disruption of PRMT3 are small in size but survive after birth and attain a normal size in adulthood, thus displaying Minute-like characteristics. The ribosome protein rpS2 is hypomethylated in the absence of PRMT3, demonstrating that it is a bona fide, in vivo PRMT3 substrate that cannot be modified by other PRMTs. Finally, the levels 40 S, 60 S, and 80 S monosomes and polyribosomes are unaffected by the loss of PRMT3, but there are additional as yet unidentified proteins that co-fractionate with ribosomes that are also dedicated PRMT3 substrates.

摘要

PRMT3是一种存在于细胞质中的I型精氨酸甲基转移酶。这种胞质PRMT3的很大一部分与核糖体相关。它通过与rpS2相互作用而与核糖体相连,rpS2也是它的底物。在此我们表明,PRMT3基因被靶向破坏的小鼠胚胎体型较小,但出生后存活下来并在成年时达到正常体型,从而表现出类微小体特征。在没有PRMT3的情况下,核糖体蛋白rpS2发生低甲基化,这表明它是一种真正的体内PRMT3底物,不能被其他PRMT修饰。最后,40 S、60 S和80 S单体及多核糖体的水平不受PRMT3缺失的影响,但有其他尚未鉴定的蛋白质与核糖体共分离,它们也是PRMT3的特定底物。

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