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Molecular mechanism of the Ca2+-dependent activation of sorcin (soluble resistance-related calcium binding protein. A study with site-specific mutants

机译:Ca2 +依赖的sorcin(可溶性抗性相关钙结合蛋白)的分子机制。位点特异性突变体的研究

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摘要

Sorcin is a two-domain protein belonging to the penta-EF-hand family that traslocates reversibly from cytosol to membranes through a Ca2+-dependent interaction with protein targets. Although EF1, EF2, EF3 are potentially able to bind calcium at micromolar concentrations, binding of two Ca2+/monomer activates sorcin and triggers translocation. To identify the functional pair, the conserved bidentate –Z glutamate in these EF-hands was mutated to yield E53Q-, E94A-, E124A-sorcin, respectively. The behavior of the three sitespecific sorcin mutants shows that the EF3 hand is the site endowed with the highest affinity for calcium and that EF2 and EF3 that are not paired structurally are the functional EF-hand pair. Information of Ca2+ binding to EF3 was proposed to be transferred to the rest of the molecule by means of the long and rigid D-helix that is shared by EF2 and EF3. To establish whether this helix is instrumental in sorcin activation, two D-helix residues were mutated into glycine: W105 involved in the network of interaction around the helix itself, and W99, which faces solvent. The substitution of W105 almost abolishes the capacity of sorcin to interact with its molecular targets while mutation of W99 has little effect. Disruption of the interaction network around the D-helix, therefore, inhibits information transfer from the EF3 hand demonstrating the central role of the D-helix in the Ca2+-dependent activation of sorcin
机译:Sorcin是一种五域EF-手家族的两结构域蛋白,通过与蛋白质靶标的Ca2 +依赖性相互作用,可逆地从胞浆转移到膜。尽管EF1,EF2,EF3可能能够以微摩尔浓度结合钙,但两个Ca2 + /单体的结合会激活sorcin并触发易位。为了鉴定功能对,将这些EF-手中保守的双齿-Z谷氨酸突变,分别得到E53Q-,E94A-,E124A-sorcin。这三个定点sorcin突变体的行为表明,EF3手是对钙具有最高亲和力的位点,而结构上不配对的EF2和EF3是功能性EF手对。 Ca2 +与EF3结合的信息被提议通过EF2和EF3共享的长而刚性的D-螺旋转移到分子的其余部分。为了确定该螺旋是否对索霉素的活化起作用,将两个D-螺旋残基突变为甘氨酸:W105参与螺旋自身周围的相互作用网络,W99面对溶剂。 W105的取代几乎消除了Sorcin与其分子靶标相互作用的能力,而W99的突变几乎没有作用。因此,破坏D-螺旋周围的相互作用网络会抑制从EF3手传递的信息,这表明D-螺旋在Sorcin的Ca2 +依赖性激活中起着核心作用

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    Mella Manuela;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 eng
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