Literature DB >> 22365395

Optimization of the assembly efficiency for lidamycin chromophore bound to its apoprotein: a case study using orthogonal array.

Gen Shen Zhong1, Xiao Fang Guo, Sheng Hua Zhang, Yong Su Zhen.   

Abstract

OBJECTIVE: Lidamycin (LDM) can be dissociated to an apoprotein (LDP) and an active enediyne chromophore (AE). The detached AE can reassemble with its LDP-containing fusion protein to endow the latter with potent antitumor activity. However, the reassembly of AE with LDP is affected by several factors. Our aim was to optimize the assembly efficiency of the AE with a LDP-containing fusion protein and investigate the influence of several factors on the assembly efficacy.
METHODS: A method based on RP-HPLC was developed to analyze the assembly rate, and an orthogonal experimental design L(9) (3(4)) was used to investigate the effects of temperature, assembly time, pH and molecular ratio of LDP-containing fusion protein to AE on the assembly rate. Furthermore, the determined optimum conditions for the assembly rate of the LDP-containing fusion protein with AE were applied and evaluated.
RESULTS: A calibration curve based on the LDM micromolar concentration against the peak-area of AE by HPLC was obtained. The order in which individual factors in the orthogonal experiment affected the assembly rate were temperature>time>pH>molar ratio of AE to protein and all were statistically significant (P<0.01). The optimal assembly conditions were temperature at 10°C, time of 12 h, pH 7.0, and the molar ratio of AE: protein of 5:1. The assembly rate of AE with a LDP-containing fusion protein was improved by 23% after condition optimization.
CONCLUSION: The assembly rate of chromophore of lidamycin with its LDP-containing fusion protein was improved after condition optimization by orthogonal design, and the optimal conditions described herein should prove useful for the development of this type of LDP-containing fusion protein. Copyright Â
© 2011 The Editorial Board of Biomedical and Environmental Sciences. Published by Elsevier B.V. All rights reserved.

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Year:  2011        PMID: 22365395     DOI: 10.3967/0895-3988.2011.06.003

Source DB:  PubMed          Journal:  Biomed Environ Sci        ISSN: 0895-3988            Impact factor:   3.118


  2 in total

1.  The novel structure make LDM effectively remove CD123+ AML stem cells in combination with interleukin 3.

Authors:  Yanjun Zhang; Rong Liu; Dongmei Fan; Rizan Shi; Ming Yang; Qingfang Miao; Zhao-Qun Deng; Jun Qian; Yongsu Zhen; Dongsheng Xiong; Jianxiang Wang
Journal:  Cancer Biol Ther       Date:  2015-07-17       Impact factor: 4.742

2.  An arginine-rich cell penetrating peptide contained anti-gelatinase scFv-LDM fusion protein shows potent antitumor efficacy in pancreatic cancer.

Authors:  Genshen Zhong; Zhishan Xu; Ru Yang; Shenghua Zhang; Liang Li; Minna Wu; Hongtao Liu; Yongsu Zhen
Journal:  J Cancer       Date:  2018-01-08       Impact factor: 4.207

  2 in total

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