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[Molecular cloning of a novel human testis-specific gene TDRG1].

Guangming Yin, J.Y. Yang, Xianzhen Jiang, Yuxin Tang, Leye He, Zhiqiang Jiang, Kuangbiao Zhong, Zeng Qing

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Abstract

OBJECTIVE: To clone a novel human testis-specific gene TDRG1. METHODS: A new contig of expression sequence tags (ESTs) Hs.180197 was identified from the testis libraries using digital differential display (DDD) to screen the novel human testis-specific gene. To validate the use of bioinformatics approaches in gene discovery, the ESTs Hs.180197, which was predicted to be testis specific, was chosen for further study. Reverse transcriptase-polymerase chain reaction (RT-PCR) was performed on different normal tissues to identify the expression of Hs.180197 in human testis. Using bioinformatics methods and IMAGE cloning of this contig, the full-length cDNA sequence of the noval human gene was cloned. RESULTS: This novel gene was 1197 bp in length, located in chromosome 6p21.1-p21.2. The sequence of the open reading frame was 504-806 bp, as confirmed by RT-PCR and sequencing in human testis. The cDNA encodes a novel protein of 100 amino acids with a theoretical molecular weight of 10 000 and isoelectric point of 6.81. The sequence shares no significant homology with any known protein in the databases. Semi-quantitative RT-PCR analysis of multiple tissues further showed that the novel gene was expressed specifically in adult human testis. Considering a possible relation of this novel gene with the function of human testis, we named this new gene TDRG1 (testis development related gene 1, GenBank accession number: DQ168992). CONCLUSION: DDD combined with laboratory validation is an efficient method for identifying new human functional genes.

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What this paper is about

OBJECTIVE: To clone a novel human testis-specific gene TDRG1. METHODS: A new contig of expression sequence tags (ESTs) Hs.180197 was identified from the testis libraries using digital differential display (DDD) to screen the novel human testis-specific gene. To validate the use of bioinformatics approaches in gene discovery, the ESTs Hs.180197, which was predicted to be testis specific, was chosen for further study. Reverse transcriptase-polymerase chain reaction (RT-PCR) was performed on different normal tissues to identify the expression of Hs.180197 in human testis. Using bioinformatics methods and IMAGE cloning of this contig, the full-length cDNA sequence of the noval human gene was cloned. RESULTS: This novel gene was 1197 bp in length, located in chromosome 6p21.1-p21.2. The sequence of the open reading frame was 504-806 bp, as confirmed by RT-PCR and sequencing in human testis. The cDNA encodes a novel protein of 100 amino acids with a theoretical molecular weight of 10 000 and isoelectric point of 6.81. The sequence shares no significant homology with any known protein in the databases. Semi-quantitative RT-PCR analysis of multiple tissues further showed that the novel gene was expressed specifically in adult human testis. Considering a possible relation of this novel gene with the function of human testis, we named this new gene TDRG1 (testis development related gene 1, GenBank accession number: DQ168992). CONCLUSION: DDD combined with laboratory validation is an efficient method for identifying new human functional genes.

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Available abstract

OBJECTIVE: To clone a novel human testis-specific gene TDRG1. METHODS: A new contig of expression sequence tags (ESTs) Hs.180197 was identified from the testis libraries using digital differential display (DDD) to screen the novel human testis-specific gene. To validate the use of bioinformatics approaches in gene discovery, the ESTs Hs.180197, which was predicted to be testis specific, was chosen for further study. Reverse transcriptase-polymerase chain reaction (RT-PCR) was performed on different normal tissues to identify the expression of Hs.180197 in human testis. Using bioinformatics methods and IMAGE cloning of this contig, the full-length cDNA sequence of the noval human gene was cloned. RESULTS: This novel gene was 1197 bp in length, located in chromosome 6p21.1-p21.2. The sequence of the open reading frame was 504-806 bp, as confirmed by RT-PCR and sequencing in human testis. The cDNA encodes a novel protein of 100 amino acids with a theoretical molecular weight of 10 000 and isoelectric point of 6.81. The sequence shares no significant homology with any known protein in the databases. Semi-quantitative RT-PCR analysis of multiple tissues further showed that the novel gene was expressed specifically in adult human testis. Considering a possible relation of this novel gene with the function of human testis, we named this new gene TDRG1 (testis development related gene 1, GenBank accession number: DQ168992). CONCLUSION: DDD combined with laboratory validation is an efficient method for identifying new human functional genes.

Key concepts: Biology, Contig, GenBank, Gene, Complementary DNA, Expressed sequence tag, Genetics, Open reading frame

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