内啡肽酶
生物
丝氨酸
磷酸化
分子生物学
核糖核酸
信使核糖核酸
细胞生物学
生物化学
核糖核酸酶P
基因
作者
Hélène Tourrière,Imed‐Eddine Gallouzi,Karim Chébli,Jean Paul Capony,John Mouaikel,Peter van der Geer,Jamal Tazi
标识
DOI:10.1128/mcb.21.22.7747-7760.2001
摘要
Mitogen activation of mRNA decay pathways likely involves specific endoribonucleases, such as G3BP, a phosphorylation-dependent endoribonuclease that associates with RasGAP in dividing but not quiescent cells. G3BP exclusively cleaves between cytosine and adenine (CA) after a specific interaction with RNA through the carboxyl-terminal RRM-type RNA binding motif. Accordingly, G3BP is tightly associated with a subset of poly(A)(+) mRNAs containing its high-affinity binding sequence, such as the c-myc mRNA in mouse embryonic fibroblasts. Interestingly, c-myc mRNA decay is delayed in RasGAP-deficient fibroblasts, which contain a defective isoform of G3BP that is not phosphorylated at serine 149. A G3BP mutant in which this serine is changed to alanine remains exclusively cytoplasmic, whereas a glutamate for serine substitution that mimics the charge of a phosphorylated serine is translocated to the nucleus. Thus, a growth factor-induced change in mRNA decay may be modulated by the nuclear localization of a site-specific endoribonuclease such as G3BP.
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