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人类核仁蛋白纤维原蛋白的进化保守性及其在酵母中的功能表达。

Evolutionary conservation of the human nucleolar protein fibrillarin and its functional expression in yeast.

作者信息

Jansen R P, Hurt E C, Kern H, Lehtonen H, Carmo-Fonseca M, Lapeyre B, Tollervey D

机构信息

European Molecular Biology Laboratory, Heidelberg, Federal Republic of Germany.

出版信息

J Cell Biol. 1991 May;113(4):715-29. doi: 10.1083/jcb.113.4.715.

Abstract

NOP1 is an essential nucleolar protein in yeast that is associated with small nucleolar RNA and required for ribosome biogenesis. We have cloned the human nucleolar protein, fibrillarin, from a HeLa cDNA library. Human fibrillarin is 70% identical to yeast NOP1 and is also the functional homologue since either human or Xenopus fibrillarin can complement a yeast nop1- mutant. Human fibrillarin is localized in the yeast nucleolus and associates with yeast small nucleolar RNAs. This shows that the signals within eucaryotic fibrillarin required for nucleolar association and nucleolar function are conserved from yeast to man. However, human fibrillarin only partially complements in yeast resulting in a temperature-sensitive growth, concomitantly altered rRNA processing and aberrant nuclear morphology. A suppressor of the human fibrillarin ts-mutant was isolated and found to map intragenically at a single amino acid position of the human nucleolar protein. The growth rate of yeast nop1- strains expressing Xenopus or human fibrillarin or the human fibrillarin suppressor correlates closely with their ability to efficiently and correctly process pre-rRNA. These findings demonstrate for the first time that vertebrate fibrillarin functions in ribosomal RNA processing in vivo.

摘要

NOP1是酵母中一种必需的核仁蛋白,与小核仁RNA相关,是核糖体生物合成所必需的。我们从HeLa cDNA文库中克隆了人类核仁蛋白原纤维蛋白。人类原纤维蛋白与酵母NOP1有70%的同源性,也是功能同源物,因为人类或非洲爪蟾的原纤维蛋白都可以互补酵母nop1-突变体。人类原纤维蛋白定位于酵母核仁,并与酵母小核仁RNA相关。这表明真核生物原纤维蛋白中核仁结合和核仁功能所需的信号从酵母到人类都是保守的。然而,人类原纤维蛋白在酵母中只能部分互补,导致温度敏感型生长,同时rRNA加工改变和核形态异常。分离出了人类原纤维蛋白温度敏感突变体的一个抑制子,发现它在基因内定位在人类核仁蛋白的一个单一氨基酸位置。表达非洲爪蟾或人类原纤维蛋白或人类原纤维蛋白抑制子的酵母nop1-菌株的生长速率与其有效且正确加工前体rRNA的能力密切相关。这些发现首次证明脊椎动物原纤维蛋白在体内核糖体RNA加工中发挥作用。

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本文引用的文献

1
One-step gene disruption in yeast.酵母中的一步基因破坏
Methods Enzymol. 1983;101:202-11. doi: 10.1016/0076-6879(83)01015-0.
2
Selection of functional cDNAs by complementation in yeast.通过酵母中的互补作用筛选功能性cDNA
Proc Natl Acad Sci U S A. 1983 Jul;80(14):4412-6. doi: 10.1073/pnas.80.14.4412.
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The yeast homologue of U3 snRNA.U3小核仁核糖核酸的酵母同源物。
EMBO J. 1987 Jul;6(7):2145-55. doi: 10.1002/j.1460-2075.1987.tb02482.x.
8
Yeast: an experimental organism for modern biology.酵母:现代生物学的实验生物体。
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