gjSOX9 Cloning, Expression, and Comparison with gjSOXs Family Members in .

Curr Issues Mol Biol

Department of Biotechnology, Life and Environmental Science College, Wenzhou University, Wenzhou 325003, China.

Published: November 2023

AI Article Synopsis

  • SOX9 is important for male reproduction, brain function, and kidney health, and this study analyzed its complete cDNA sequence and expression patterns in various tissues.
  • The gjSOX9 gene consists of 1895 base pairs, encoding a protein of 494 amino acids, and shows a unique expression pattern in gonadal tissues.
  • The study helps unveil the functions and evolutionary relationships of SOX9 family members, providing insights into their regulation and roles in sex determination in reptiles.

Article Abstract

SOX9 plays a crucial role in the male reproductive system, brain, and kidneys. In this study, we firstly analyzed the complete cDNA sequence and expression patterns for SOX9 from SOX9 (gjSOX9), carried out bioinformatic analyses of physiochemical properties, structure, and phylogenetic evolution, and compared these with other members of the gjSOX family. The results indicate that gjSOX9 cDNA comprises 1895 bp with a 1482 bp ORF encoding 494aa. gjSOX9 was not only expressed in various adult tissues but also exhibited a special spatiotemporal expression pattern in gonad tissues. gjSOX9 was predicted to be a hydrophilic nucleoprotein with a characteristic HMG-Box harboring a newly identified unique sequence, "YKYQPRRR", only present in SOXE members. Among the 20 SOX9 orthologs, gjSOX9 shares the closest genetic relationships with SOX9, SOX9, and SOX9. gjSOX9 and gjSOX10 possessed identical physicochemical properties and subcellular locations and were tightly clustered with gjSOX8 in the SOXE group. Sixteen gjSOX family members were divided into six groups: SOXB, C, D, E, F, and H with gjSOX8, 9, and 10 in SOXE among 150 SOX homologs. Collectively, the available data in this study not only facilitate a deep exploration of the functions and molecular regulation mechanisms of the gjSOX9 and gjSOX families in but also contribute to basic research regarding the origin and evolution of SOX9 homologs or even sex-determination mode in reptiles.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10670703PMC
http://dx.doi.org/10.3390/cimb45110584DOI Listing

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