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PacC锌指结构域内核定位信号与特定DNA结合残基的重叠

Overlap of nuclear localisation signal and specific DNA-binding residues within the zinc finger domain of PacC.

作者信息

Fernández-Martínez Javier, Brown Christopher V, Díez Eliecer, Tilburn Joan, Arst Herbert N, Peñalva Miguel A, Espeso Eduardo A

机构信息

Departamento de Microbiologia Molecular, Centro de Investigaciones Biológicas CSIC, Ramiro de Maeztu, 9, Madrid 28040, Spain.

出版信息

J Mol Biol. 2003 Dec 5;334(4):667-84. doi: 10.1016/j.jmb.2003.09.072.

Abstract

The transcription factor PacC, mediating regulation of gene expression by ambient pH in the genetically amenable fungus Aspergillus nidulans, contains a three zinc finger DNA-binding domain (zf-DBD) including a nuclear localisation signal (NLS). We selected 38 novel mutations impairing PacC function, of which 21 missense mutations identify individual residues essential for zf-DBD structure/function. Our functional analysis agrees with our previous conclusion that finger 1 does not bind DNA and provides in vivo evidence that Trp80 and Trp116, located in the Cys knuckles of adjacent zinc fingers, are critical for zf-DBD structure/function. In the finger 3 alpha-helix, Gln155 (+4) is specifically involved in contacting DNA, while the major role of Lys159 (+6) resides in the nuclear localisation of the protein. In contrast, Lys158 is essential for DNA binding and for nuclear localisation. As finger 3 suffices to drive nuclear localisation of green fluorescent protein, we conclude that it contains an NLS including essential Lys158 and Lys159. These residues are within an alpha-helical basic sequence that is completely conserved amongst zinc fingers of the PacC/RIM101 family and present in an identical position of the last finger alpha-helix of Drosophila Cubitus interruptus, where it is also involved in nuclear localisation. We propose that PacC and Gli/Ci zf-DBDs belong to a subclass of these domains characterised by possession of a pair of conserved Trp residues involved in the interaction between the two most N-terminal fingers and the presence of an NLS in the alpha-helix of the most C-terminal finger. Loss of PacC nuclear localisation resulting from His142Leu (beta-strand) and Phe151Ser (hydrophobic core) substitutions in finger 3 suggests that its folding is required for NLS function. Overlap of DNA binding and NLS may aid release of PacC from its cognate importer(s) upon nuclear translocation, as suggested for zinc binuclear cluster proteins.

摘要

转录因子PacC可介导基因表达受环境pH的调控,在遗传上易于操作的真菌构巢曲霉中,它包含一个具有核定位信号(NLS)的三锌指DNA结合结构域(zf-DBD)。我们筛选出38个损害PacC功能的新突变,其中21个错义突变确定了zf-DBD结构/功能所必需的个别残基。我们的功能分析与我们之前关于锌指1不结合DNA的结论一致,并提供了体内证据,即位于相邻锌指的半胱氨酸关节处的Trp80和Trp116对zf-DBD结构/功能至关重要。在锌指3的α螺旋中,Gln155(+4)特别参与与DNA的接触,而Lys159(+6)的主要作用在于蛋白质的核定位。相比之下,Lys158对于DNA结合和核定位都是必不可少的。由于锌指3足以驱动绿色荧光蛋白的核定位,我们得出结论,它包含一个包括必需的Lys158和Lys159的NLS。这些残基位于一个α螺旋碱性序列内,该序列在PacC/RIM101家族的锌指中完全保守,并且存在于果蝇间断翅脉蛋白最后一个锌指α螺旋的相同位置,在那里它也参与核定位。我们提出,PacC和Gli/Ci的zf-DBD属于这些结构域的一个亚类,其特征是拥有一对保守的色氨酸残基,参与两个最N端锌指之间的相互作用,并且在最C端锌指的α螺旋中存在一个NLS。锌指3中His142Leu(β链)和Phe151Ser(疏水核心)取代导致PacC核定位丧失,这表明其折叠对于NLS功能是必需的。正如锌双核簇蛋白所表明的那样,DNA结合和NLS的重叠可能有助于PacC在核转运后从其同源导入蛋白中释放出来。

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