丝光绿蝇幼虫netrin-1 UNC-5受体的分子特征

Tahereh Karamzadeh, H. Alipour, Marziae Shahriari-Namadi, A. Raz, K. Azizi, M. Bagheri, M. Moemenbellah-Fard
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引用次数: 6

摘要

摘要蚕丝绿蝇幼虫治疗是一种很有前途的创面愈合方法。轴突引导分子在神经系统发育过程中起着重要的作用,并在伤口愈合过程中调节神经元的修复能力。Netrin-1是幼虫分泌的一种蛋白质,在细胞迁移和神经组织再生中起着有益的作用。UNC-5受体与netrin-1信号结合,并将信号从膜的一侧传递到另一侧,从而引发细胞活性的变化。在本研究中,我们使用不同的引物,包括外显子连接和特定区域引物,鉴定了丝蚕UNC-5受体mRNA的全长。对UNC-5受体的编码序列(CDS)进行测序和鉴定,包括633个碱基对的核酸,BLAST分析显示其核苷酸序列与Lucilia cuprina netrin-1 UNC-5受体的同源性为96%。该蛋白残基包含210个氨基酸(aa),编码一个分子量为24 kD的蛋白。这个基因缺少信号肽。此外,UPA域在UNC-5中是保守的。在26 ~ 131aa之间。我们鉴定了丝蚕netrin-1 UNC-5受体的CDS。它可以应用于在伤口愈合中实施一种新的基本组件设计的研究活动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular characterization of the netrin-1 UNC-5 receptor in Lucilia sericata larvae
Abstract Larval therapy with Lucilia sericata is a promising strategy in wound healing. Axon guidance molecules play vital roles during the development of the nervous system and also regulate the capacity of neuronal restoration in wound healing. Netrin-1, one of the proteins that larvae secrete, plays a useful role in cell migration and nerve tissue regeneration. The UNC-5 receptor combines with a netrin-1 signal and transmits the signal from one side of the membrane to the other side, initiating a change in cell activity. In the current study, we identified the full length of the UNC-5 receptor mRNA in L. sericata using different sets of primers, including exon junction and specific region primers. The coding sequence (CDS) of the UNC-5 receptor was sequenced and identified to include 633 base-pair nucleic acids, and BLAST analysis on its nucleotide sequence revealed 96% identity with the Lucilia cuprina netrin-1 UNC-5 receptor. The protein residue included 210 amino acids (aa) and coded for a protein with 24 kD weight. This gene lacked the signal peptide. Furthermore, the UPA domain is conserved in UNC-5. It lied at the interval of 26–131 aa. We identified the CDS of netrin-1 UNC-5 receptor in L. sericata. It could be applied to research activities implementing a new essential component design in wound healing.
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来源期刊
AIMS Genetics
AIMS Genetics GENETICS & HEREDITY-
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