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含有KXTQT基序肽的LC8复合物的结构与动力学:吞咽蛋白和动力蛋白中间链竞争一个共同位点。

Structure and dynamics of LC8 complexes with KXTQT-motif peptides: swallow and dynein intermediate chain compete for a common site.

作者信息

Benison Gregory, Karplus P Andrew, Barbar Elisar

机构信息

Department of Biochemistry and Biophysics, Oregon State University, Corvallis, OR 97331, USA.

出版信息

J Mol Biol. 2007 Aug 10;371(2):457-68. doi: 10.1016/j.jmb.2007.05.046. Epub 2007 May 24.

Abstract

The dynein light chain LC8 is an integral subunit of the cytoplasmic dynein motor complex that binds directly to and promotes assembly of the dynein intermediate chain (IC). LC8 interacts also with a variety of putative dynein cargo molecules such as Bim, a proapoptotic Bcl2 family protein, which have the KXTQT recognition sequence and neuronal nitric oxide synthase (nNOS), which has the GIQVD fingerprint but shares the same binding grooves at the LC8 dimer interface. The work reported here investigates the interaction of LC8 with IC and a putative cargo, Swallow, which share the KXTQT recognition sequence, and addresses the apparent paradox of how LC8, as part of dynein, mediates binding to cargo. The structures of Drosophila LC8 bound to peptides from IC and Swallow solved by X-ray diffraction show that the IC and Swallow peptides bind in the same grooves at the dimer interface. Differences in flexibility between bound and free LC8 were evaluated from hydrogen isotope exchange experiments using heteronuclear NMR spectroscopy. Peptide binding causes an increase in protection from exchange primarily in residues that interact directly with the peptide, such as the beta-strand intertwined at the interface and the N-terminal end of helix alpha2. There is considerably more protection upon Swallow binding, consistent with tighter binding relative to IC. Comparison with the LC8/nNOS complex shows how both the GIQVD and KXTQT fingerprints are recognized in the same groove. The similar structures of LC8/IC and LC8/Swa and the tighter binding of Swallow call into question the role for LC8 as a cargo adaptor protein, and suggest that binding of LC8 to Swallow serves another function, possibly that of a dimerization engine, which is independent of its role in dynein.

摘要

动力蛋白轻链LC8是胞质动力蛋白运动复合体的一个组成亚基,它直接结合并促进动力蛋白中间链(IC)的组装。LC8还与多种假定的动力蛋白货物分子相互作用,如促凋亡Bcl2家族蛋白Bim,其具有KXTQT识别序列,以及神经元型一氧化氮合酶(nNOS),其具有GIQVD指纹,但在LC8二聚体界面共享相同的结合凹槽。本文报道的工作研究了LC8与IC以及具有KXTQT识别序列的假定货物Swallow之间的相互作用,并解决了LC8作为动力蛋白的一部分如何介导与货物结合这一明显的矛盾。通过X射线衍射解析的与来自IC和Swallow的肽结合的果蝇LC8的结构表明,IC和Swallow肽在二聚体界面的相同凹槽中结合。使用异核核磁共振光谱通过氢同位素交换实验评估了结合态和游离态LC8之间的灵活性差异。肽结合主要导致与肽直接相互作用的残基(如在界面处缠绕的β链和α2螺旋的N末端)的交换保护增加。Swallow结合时的保护作用要强得多,这与相对于IC的更紧密结合一致。与LC8/nNOS复合体的比较显示了GIQVD和KXTQT指纹如何在同一凹槽中被识别。LC8/IC和LC8/Swa的相似结构以及Swallow的更紧密结合对LC8作为货物衔接蛋白的作用提出了质疑,并表明LC8与Swallow的结合具有另一种功能,可能是二聚化引擎的功能,这与其在动力蛋白中的作用无关。

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