Literature DB >> 19306065

Important roles of the conserved linker-KKS in human neuronal growth inhibitory factor.

Zhi-Chun Ding1, Xin-Chen Teng, Qi Zheng, Feng-Yun Ni, Bin Cai, Yang Wang, Guo-Ming Zhou, Hong-Zhe Sun, Xiang-Shi Tan, Zhong-Xian Huang.   

Abstract

Metallothinein-3 (MT3), also named neuronal growth inhibitory factor (GIF), is attractive by its distinct neuronal growth inhibitory activity, which is not shared by other MT isoforms. The polypeptide chain of GIF is folded into two individual domains, which are connected by a highly conserved linker, KKS. In order to figure out the significance of the conserved segment, we constructed several mutants of human GIF (hGIF), including the K31/32A mutant, the K31/32E mutant and the KKS-SP mutant by site-directed mutagenesis. pH titration and DTNB reaction exhibited that all the three mutations made the beta-domain lower in stability and looser. More significantly, change of KKS to SP also altered the general backbone conformation and metal-thiolate cluster geometry. Notably, bioassay results showed that the bioactivity of the K31/32A mutant and the K31/32E mutant decreased obviously, while the KKS-SP mutant lost inhibitory activity completely. Based on these results, we proposed that the KKS linker was a crucial factor in modulating the stability and the solvent accessibility of the Cd(3)S(9) cluster in the beta-domain through domain-domain interactions, thus was indispensable to the biological activity of hGIF.

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Year:  2009        PMID: 19306065     DOI: 10.1007/s10534-009-9228-1

Source DB:  PubMed          Journal:  Biometals        ISSN: 0966-0844            Impact factor:   2.949


  1 in total

1.  The molecular mechanism for human metallothionein-3 to protect against the neuronal cytotoxicity of Aβ(1-42) with Cu ions.

Authors:  Ying Luo; Yuxia Xu; Qingui Bao; Zhichun Ding; Cuiqing Zhu; Zhong-Xian Huang; Xiangshi Tan
Journal:  J Biol Inorg Chem       Date:  2012-10-21       Impact factor: 3.358

  1 in total

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