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Tsc1+ 和tsc2+ 调控粟酒裂殖酵母中的精氨酸摄取与代谢。

Tsc1+ and tsc2+ regulate arginine uptake and metabolism in Schizosaccharomyces pombe.

作者信息

van Slegtenhorst Marjon, Carr Erikka, Stoyanova Radka, Kruger Warren D, Henske Elizabeth Petri

机构信息

Department of Medical Oncology, Fox Chase Cancer Center, 333 Cottman Avenue, Philadelphia, PA 19111, USA.

出版信息

J Biol Chem. 2004 Mar 26;279(13):12706-13. doi: 10.1074/jbc.M313874200. Epub 2004 Jan 12.

Abstract

Mutations in either TSC1 or TSC2 cause tuberous sclerosis complex, an autosomal dominant disorder characterized by seizures, mental retardation, and benign tumors of the skin, brain, heart, and kidneys. Homologs for the TSC1 and TSC2 genes have been identified in mouse, rat, Fugu, Drosophila, and in the yeast Schizosaccharomyces pombe. Here we show that S. pombe lacking tsc1+ or tsc2+ have similar phenotypes including decreased arginine uptake, decreased expression of three amino acid permeases, and low intracellular levels of four members of the arginine biosynthesis pathway. Recently, the small GTPase Rheb was identified as a target of the GTPase-activating domain of tuberin in mammalian cells and in Drosophila. We show that the defect in arginine uptake in cells lacking tsc2+ is rescued by the expression of a dominant negative form of rhb1+, the Rheb homolog in S. pombe, but not by expressing wild-type rhb1+. Expression of the tsc2+ gene with a patient-derived mutation within the GAP domain did not rescue the arginine uptake defect in tsc2+ mutant yeast. Taken together, these findings support a model in which arginine uptake is regulated through tsc1+, tsc2+, and rhb1+ in S. pombe and also suggest a role for the Tsc1 and Tsc2 proteins in amino acid biosynthesis and sensing.

摘要

TSC1或TSC2中的突变会导致结节性硬化症,这是一种常染色体显性疾病,其特征为癫痫、智力迟钝以及皮肤、脑、心脏和肾脏的良性肿瘤。在小鼠、大鼠、河豚、果蝇以及粟酒裂殖酵母中已鉴定出TSC1和TSC2基因的同源物。在此我们表明,缺乏tsc1+或tsc2+的粟酒裂殖酵母具有相似的表型,包括精氨酸摄取减少、三种氨基酸通透酶的表达降低以及精氨酸生物合成途径的四个成员的细胞内水平较低。最近,小GTP酶Rheb被鉴定为哺乳动物细胞和果蝇中结节蛋白的GTP酶激活结构域的一个靶点。我们表明,缺乏tsc2+的细胞中精氨酸摄取的缺陷可通过表达粟酒裂殖酵母中Rheb同源物rhb1+的显性负性形式来挽救,但不能通过表达野生型rhb1+来挽救。在GAP结构域内带有患者来源突变的tsc2+基因的表达不能挽救tsc2+突变酵母中的精氨酸摄取缺陷。综上所述,这些发现支持了一个模型,即在粟酒裂殖酵母中精氨酸摄取是通过tsc1+、tsc2+和rhb1+来调节的,并且还表明Tsc1和Tsc2蛋白在氨基酸生物合成和感知中发挥作用。

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