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果蝇zeste蛋白的多聚化是有效DNA结合所必需的。

Multimerization of the Drosophila zeste protein is required for efficient DNA binding.

作者信息

Chen J D, Pirrotta V

机构信息

Department of Cell Biology, Baylor College of Medicine, Texas Medical Center, Houston 77030.

出版信息

EMBO J. 1993 May;12(5):2075-83. doi: 10.1002/j.1460-2075.1993.tb05856.x.

Abstract

The Drosophila zeste protein forms multimeric species in vitro through its C-terminal domain. Multimerization is required for efficient binding to DNA containing multiple recognition sequences and increasing the number of binding sites stimulates binding in a cooperative manner. Mutants that can only form dimers still bind to a dimeric site, but with lower affinity. Mutations or progressive deletions from the C-terminal show that when even dimer formation is prevented, DNA-binding activity is lost. Surprisingly, binding activity is regained with larger deletions that leave only the DNA-binding domain. Additional protein sequences apparently inhibit DNA binding unless they permit multimerization. The DNA-binding domain peptides bind strongly even to isolated recognition sequences and they bind as monomers. The ability of various zeste peptides to stimulate white gene expression in vivo shows that multimeric forms are the functional species of the zeste product in vivo. The DNA-binding domain peptide binds well to DNA in vitro, but it cannot stimulate white gene expression in vivo. This failure may reflect the need for an activation domain or it may be caused by indiscriminate binding of this peptide to non-functional isolated sites. Multimerization increases binding specificity, selecting only sites with multiple recognition sequences.

摘要

果蝇zeste蛋白通过其C末端结构域在体外形成多聚体。多聚化对于有效结合含有多个识别序列的DNA是必需的,增加结合位点的数量会以协同方式刺激结合。只能形成二聚体的突变体仍能与二聚体位点结合,但亲和力较低。C末端的突变或逐步缺失表明,即使阻止二聚体形成,DNA结合活性也会丧失。令人惊讶的是,仅留下DNA结合结构域的更大缺失会恢复结合活性。额外的蛋白质序列显然会抑制DNA结合,除非它们允许多聚化。DNA结合结构域肽即使与分离的识别序列也能强烈结合,并且它们以单体形式结合。各种zeste肽在体内刺激白色基因表达的能力表明,多聚体形式是zeste产物在体内的功能形式。DNA结合结构域肽在体外与DNA结合良好,但它不能在体内刺激白色基因表达。这种失败可能反映了对激活结构域的需求,或者可能是由于该肽与非功能性分离位点的无差别结合所致。多聚化增加了结合特异性,仅选择具有多个识别序列的位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd11/413429/1f4b4ed535b8/emboj00077-0341-a.jpg

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