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Epigenetics

Epigenetics is the science studying changes that occur to the genes due to the biological factors induced by the environment and physiological behaviors. On the contrary to genetic changes, these modifications are not settled in the genome to last. They are not included in the DNA sequence and are reversible. The downstream process of the gene information is changed although the genetic information is the same. The epigenetics modification can alter the way the coded information will be read.
Therefore some information will be missing or added. These modifications might be kept through cell division and even between generations.
ProteoGenix offers epigenetics products for research use. It includes epigenetics targets and proteins as well as antibodies targeting those proteins, especially related to DNA processing and transcription.

Among the main modifications in epigenetics, we find, for example, DNA Methylation, Histone modification, Non-coding RNA, RNA modification, chromatin remodeling and dominant nucleoli. In the case of DNA Methylation for example, the gene is bound to a methyl group which may enhance or hinder the binding of transcription machinery. Histone modification, by the addition of methyl groups for example, happen post translation. The shape of the protein might therefore be changed and thus the association or unwinding of the DNA around it. The consequences of one of these modifications will highly depend on the position of the modification and the interaction of the target and proteins like transcription factors that interact with this locus. Epigenetics have been studied in the case of illnesses such as cancers or diabetes in which the alterations can enhance the disease. It is also studied in the case of genomic imprinting, describing the unbalanced consequence for the offspring of epigenetic modification depending on the origin from the father or the mother.

Epigenetic modifications enable the multicellular organism to have differentiated types of cells. The acquired or losses of gene expression are kept from one cell to another during cell division. This phenomenon has been shown in epigenetic assays to differentiate homozygotic twins that acquired modification as they had different experience although their genome and epigenome was the same in the early years.

The study of epigenetics includes chromatin immunoprecipitation, mutation-sensitive restriction enzymes assays, fluorescent in situ hybridization and bioinformatics.

182 products
  • Recombinant Human SUV39H2 Protein, N-His

    Recombinant Human SUV39H2 Protein, N-His

    • ARO-P12173
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Human
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Recombinant Human TAF1 Protein, N-His

    Recombinant Human TAF1 Protein, N-His

    • ARO-P11508
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Human
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Recombinant Human TFPT Protein, N-GST & C-His

    Recombinant Human TFPT Protein, N-GST & C-His

    • ARO-P16103
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Human
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Recombinant Human TPSAB1/Tryptase-1, N-His

    Recombinant Human TPSAB1/Tryptase-1, N-His

    • ARO-P13357
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Human
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Recombinant Human TRDMT1 Protein, N-His

    Recombinant Human TRDMT1 Protein, N-His

    • ARO-P10175
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Homo sapiens (Human)
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Recombinant Human TUBA4A Protein, N-His

    Recombinant Human TUBA4A Protein, N-His

    • ARO-P11506
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Human
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Recombinant Human UTY Protein, N-His

    Recombinant Human UTY Protein, N-His

    • ARO-P10179
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Homo sapiens (Human)
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • SDS-PAGE for Recombinant Human VPS72 Protein, N-His-KSI

    Recombinant Human VPS72 Protein, N-His-KSI

    • ARO-P17276
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Human
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Recombinant Human WEE1 Protein, N-His

    Recombinant Human WEE1 Protein, N-His

    • ARO-P11650
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Human
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Recombinant Human YEATS4 Protein, N-GST in WB Assay

    Recombinant Human YEATS4 Protein, N-GST

    • ARO-P10403
    • Validated WB
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Human
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Recombinant Mouse CD49a/ITGA1/VLA-1 Protein, N-His

    Recombinant Mouse CD49a/ITGA1/VLA-1 Protein, N-His

    • ARO-P10833
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Mouse
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Recombinant Mouse PADI2 Protein, N-Strep

    Recombinant Mouse PADI2 Protein, N-Strep

    • ARO-P10923
    Host species:
    Insect
    Origin species:
    Mouse
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Recombinant Mouse RLN1 Protein, N-GST & C-His

    Recombinant Mouse RLN1 Protein, N-GST & C-His

    • ARO-P10642
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Mouse
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Recombinant Mouse-ear cress CENH3 Protein, N-GST & C-His

    Recombinant Mouse-ear cress CENH3 Protein, N-GST & C-His

    • ARO-P10237
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    A. thaliana
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
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