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Coiled-Coil Trigger Motifs in the 1B and 2B Rod Domain Segments Are Required for the Stability of Keratin Intermediate Filaments

机译:1B和2B杆域段中的线圈绕制触发器母题 需要角蛋白中间丝的稳定性

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摘要

Many α-helical proteins that form two-chain coiled coils possess a 13-residue trigger motif that seems to be required for the stability of the coiled coil. However, as currently defined, the motif is absent from intermediate filament (IF) protein chains, which nevertheless form segmented two-chain coiled coils. In the present work, we have searched for and identified two regions in IF chains that are essential for the stability necessary for the formation of coiled-coil molecules and thus may function as trigger motifs. We made a series of point substitutions with the keratin 5/keratin 14 IF system. Combinations of the wild-type and mutant chains were assembled in vitro and in vivo, and the stabilities of two-chain (one-molecule) and two-molecule assemblies were examined with use of a urea disassembly assay. Our new data document that there is a region located between residues 100 and 113 of the 2B rod domain segment that is absolutely required for molecular stability and IF assembly. This potential trigger motif differs slightly from the consensus in having an Asp residue at position 4 (instead of a Glu) and a Thr residue at position 9 (instead of a charged residue), but there is an absolute requirement for a Glu residue at position 6. Because these 13 residues are highly conserved, it seems possible that this motif functions in all IF chains. Likewise, by testing keratin IF with substitutions in both chains, we identified a second potential trigger motif between residues 79 and 91 of the 1B rod domain segment, which may also be conserved in all IF chains. However, we were unable to find a trigger motif in the 1A rod domain segment. In addition, many other point substitutions had little detectable effect on IF assembly, except for the conserved Lys-23 residue of the 2B rod domain segment. Cross-linking and modeling studies revealed that Lys-23 may lie very close to Glu-106 when two molecules are aligned in the A22 mode. Thus, the Glu-106 residue may have a dual role in IF structure: it may participate in trigger formation to afford special stability to the two-chain coiled-coil molecule, and it may participate in stabilization of the two-molecule hierarchical stage of IF structure.
机译:形成两链卷曲螺旋的许多α螺旋蛋白具有13个残基的触发基序,这似乎是卷曲螺旋的稳定性所必需的。但是,按照目前的定义,中间丝(IF)蛋白链不存在该基序,但是中间丝却形成了分段的两链卷曲螺旋。在目前的工作中,我们已经搜索并确定了IF链中的两个区域,这对于形成卷曲螺旋分子所必需的稳定性至关重要,因此可以用作触发基序。我们使用角蛋白5 /角蛋白14 IF系统进行了一系列点替换。在体外和体内组装野生型和突变链的组合,并使用尿素分解测定法检查两链(一分子)和两分子组装的稳定性。我们的新数据表明,在2B杆结构域片段的残基100和113之间有一个区域,这对于分子稳定性和IF组装是绝对必要的。这种潜在的触发基序与共识的稍有不同,在4位具有Asp残基(而不是Glu),在9位具有Thr残基(而不是Glu)。 带电荷的残渣),但绝对需要Glu 6位残基。由于这13个残基是高度保守的, 该基序似乎在所有IF链中均起作用。同样 通过测试两个链中都有取代的角蛋白IF,我们确定了 1B残基79和91之间的第二个潜在触发基序 杆域区段,其在所有IF链中也可能是保守的。 但是,我们无法在1A杆域中找到触发基序 分割。此外,许多其他点替换几乎没有 除保守的Lys-23外,对IF组装可检测到的影响 2B杆域片段的残基。交联和建模 研究表明,当两个人在一起时,Lys-23可能与Glu-106非常接近 分子以A22模式排列。因此,Glu-106 残基在IF结构中可能具有双重作用:它可能参与 触发形成以赋予双链特别的稳定性 卷曲螺旋分子,它可能参与稳定 IF结构的两分子分级阶段。

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