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LAP2与BAF-DNA复合物结合:LEM结构域的需求及可变区的调节作用

LAP2 binds to BAF.DNA complexes: requirement for the LEM domain and modulation by variable regions.

作者信息

Shumaker D K, Lee K K, Tanhehco Y C, Craigie R, Wilson K L

机构信息

Department of Cell Biology and Anatomy, The Johns Hopkins University School of Medicine, 725 N.Wolfe Street, Baltimore MD 21205, USA.

出版信息

EMBO J. 2001 Apr 2;20(7):1754-64. doi: 10.1093/emboj/20.7.1754.

Abstract

LAP2 belongs to a family of nuclear membrane proteins sharing a 43 residue LEM domain. All LAP2 isoforms have the same N-terminal 'constant' region (LAP2-c), which includes the LEM domain, plus a C-terminal 'variable' region. LAP2-c polypeptide inhibits nuclear assembly in Xenopus extracts, and binds in vitro to barrier-to-autointegration factor (BAF), a DNA-bridging protein. We tested 17 Xenopus LAP2-c mutants for nuclear assembly inhibition, and binding to BAF and BAF small middle dotDNA complexes. LEM domain mutations disrupted all activities tested. Some mutations outside the LEM domain had no effect on binding to BAF, but disrupted activity in Xenopus extracts, suggesting that LAP2-c has an additional unknown function required to inhibit nuclear assembly. Mutagenesis results suggest that BAF changes conformation when complexed with DNA. The binding affinity of LAP2 was higher for BAF small middle dotDNA complexes than for BAF, suggesting that these interactions are physiologically relevant. Nucleoplasmic domains of Xenopus LAP2 isoforms varied 9-fold in their affinities for BAF, but all isoforms supershifted BAF small middle dotDNA complexes. We propose that the LEM domain is a core BAF-binding domain that can be modulated by the variable regions of LAP2 isoforms.

摘要

LAP2属于一个核膜蛋白家族,它们共享一个43个氨基酸残基的LEM结构域。所有LAP2同工型都有相同的N端“恒定”区域(LAP2-c),其中包括LEM结构域,外加一个C端“可变”区域。LAP2-c多肽在非洲爪蟾提取物中抑制核组装,并在体外与屏障-自整合因子(BAF)结合,BAF是一种DNA桥连蛋白。我们测试了17个非洲爪蟾LAP2-c突变体的核组装抑制作用,以及与BAF和BAF·DNA复合物的结合情况。LEM结构域突变破坏了所有测试的活性。LEM结构域之外的一些突变对与BAF的结合没有影响,但破坏了非洲爪蟾提取物中的活性,这表明LAP2-c具有抑制核组装所需的另一种未知功能。诱变结果表明,BAF与DNA结合时会改变构象。LAP2对BAF·DNA复合物的结合亲和力高于对BAF的亲和力,这表明这些相互作用在生理上是相关的。非洲爪蟾LAP2同工型的核质结构域对BAF的亲和力相差9倍,但所有同工型都使BAF·DNA复合物发生超迁移。我们提出,LEM结构域是一个核心BAF结合结构域,可被LAP2同工型的可变区域调节。

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