Cáceres J F, Screaton G R, Krainer A R
Cold Spring Harbor Laboratory, Cold Spring Harbor, New York 11724-2208, USA.
Genes Dev. 1998 Jan 1;12(1):55-66. doi: 10.1101/gad.12.1.55.
The SR proteins constitute a large family of nuclear phosphoproteins required for constitutive pre-mRNA splicing. These factors also have global, concentration-dependent effects on alternative splicing regulation and this activity is antagonized by members of the hnRNP A/B family of proteins. We show here that whereas some human SR proteins are confined to the nucleus, three of them-SF2/ASF, SRp20, and 9G8-shuttle rapidly and continuously between the nucleus and the cytoplasm. By swapping the corresponding domains between shuttling and nonshuttling SR proteins, we show that the carboxy-terminal arginine/serine-rich (RS) domain is required for shuttling. This domain, however, is not sufficient to promote shuttling of an unrelated protein reporter, suggesting that stable RNA binding mediated by the RNA-recognition motifs may be required for shuttling. Consistent with such a requirement, a double point-mutation in RRM1 of SF2/ASF that impairs RNA binding prevents the protein from shuttling. In addition, we show that phosphorylation of the RS domain affects the shuttling properties of SR proteins. These findings show that different SR proteins have unique intracellular transport properties and suggest that the family members that shuttle may have roles not only in nuclear pre-mRNA splicing but also in mRNA transport, cytoplasmic events, and/or processes that involve communication between the nucleus and the cytoplasm.
SR蛋白构成了一个大型的核磷蛋白家族,是组成型前体mRNA剪接所必需的。这些因子对可变剪接调控也具有全局性的、浓度依赖性的影响,并且这种活性受到hnRNP A/B蛋白家族成员的拮抗。我们在此表明,虽然一些人类SR蛋白局限于细胞核,但其中三种蛋白——SF2/ASF、SRp20和9G8——在细胞核和细胞质之间快速且持续地穿梭。通过在穿梭型和非穿梭型SR蛋白之间交换相应结构域,我们发现羧基末端富含精氨酸/丝氨酸的(RS)结构域是穿梭所必需的。然而,该结构域不足以促进无关蛋白报告基因的穿梭,这表明穿梭可能需要由RNA识别基序介导的稳定RNA结合。与此要求一致,SF2/ASF的RRM1中的双点突变损害了RNA结合,从而阻止了该蛋白的穿梭。此外,我们表明RS结构域的磷酸化会影响SR蛋白的穿梭特性。这些发现表明不同的SR蛋白具有独特的细胞内运输特性,并表明穿梭的家族成员可能不仅在核前体mRNA剪接中起作用,而且在mRNA运输、细胞质事件和/或涉及细胞核与细胞质之间通讯的过程中起作用。