In humans, the HS1.2 enhancer in the Ig heavy-chain locus is modular, with length polymorphism. Previous studies have shown the following features for this variation: (i) strong population structuring; (ii) association with autoimmune diseases; and (iii) association with developmental changes in Ig expression. The HS1.2 region could then be considered as a contributor to inter-individual diversity in humoral response in adaptive immunity. We experimentally determined the HS1.2-length class genotype in 72 of the 1000 Genomes CEU cell lines and assigned the HS1.2 alleles to haplotypes defined by 18 landmark SNPs. We also sequenced the variable portion and ~200 bp of the flanking DNA of 34 HS1.2 alleles. Furthermore, we computationally explored the ability of different allelic arrangements to bind transcription factors. Non-random association between HS1.2 and Gm allotypes in the European population clearly emerged. We show a wealth of variation in the modular composition of HS1.2, with five SNPs further contributing to diversity. Longer alleles offer more potential sites for binding but, for same-length alleles, SNP variation creates/destroys potential binding sites. Altogether, the arrangements of modules and SNP alleles both inside and outside HS1.2 denote an organization of diversity far from randomness. In the context of the strong divergence of human populations for this genomic region and the reported disease associations, our results suggest that selective forces shaped the pattern of its diversity.

Jodice, C., Malaspina, P., Ciminelli, B.m., Martinez-Labarga, C., Biancolella, M., Novelli, G., et al. (2024). Variation of the 3’RR1 HS1.2 Enhancer and Its Genomic Context. GENES, 15(7), 1-11 [10.3390/genes15070856].

Variation of the 3’RR1 HS1.2 Enhancer and Its Genomic Context

Jodice, Carla;Malaspina, Patrizia;Ciminelli, Bianca Maria;Martinez-Labarga, Cristina;Biancolella, Michela;Novelli, Giuseppe;Novelletto, Andrea
2024-06-29

Abstract

In humans, the HS1.2 enhancer in the Ig heavy-chain locus is modular, with length polymorphism. Previous studies have shown the following features for this variation: (i) strong population structuring; (ii) association with autoimmune diseases; and (iii) association with developmental changes in Ig expression. The HS1.2 region could then be considered as a contributor to inter-individual diversity in humoral response in adaptive immunity. We experimentally determined the HS1.2-length class genotype in 72 of the 1000 Genomes CEU cell lines and assigned the HS1.2 alleles to haplotypes defined by 18 landmark SNPs. We also sequenced the variable portion and ~200 bp of the flanking DNA of 34 HS1.2 alleles. Furthermore, we computationally explored the ability of different allelic arrangements to bind transcription factors. Non-random association between HS1.2 and Gm allotypes in the European population clearly emerged. We show a wealth of variation in the modular composition of HS1.2, with five SNPs further contributing to diversity. Longer alleles offer more potential sites for binding but, for same-length alleles, SNP variation creates/destroys potential binding sites. Altogether, the arrangements of modules and SNP alleles both inside and outside HS1.2 denote an organization of diversity far from randomness. In the context of the strong divergence of human populations for this genomic region and the reported disease associations, our results suggest that selective forces shaped the pattern of its diversity.
29-giu-2024
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore BIO/18
English
Con Impact Factor ISI
HS1.2 Ig enhancer; Ig allotypes; immunoglobulins; transcription factor binding
Jodice, C., Malaspina, P., Ciminelli, B.m., Martinez-Labarga, C., Biancolella, M., Novelli, G., et al. (2024). Variation of the 3’RR1 HS1.2 Enhancer and Its Genomic Context. GENES, 15(7), 1-11 [10.3390/genes15070856].
Jodice, C; Malaspina, P; Ciminelli, Bm; Martinez-Labarga, C; Biancolella, M; Novelli, G; Novelletto, A
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/381883
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