H2afy (Macroh2a1) (NM_001159515) Mouse Tagged ORF Clone Lentiviral Particle

CAT#: MR205680L3V

  • LentiORF®

Lenti ORF particles, H2afy (Myc-DDK-tagged) - Mouse H2A histone family, member Y (H2afy), transcript variant 4, 200ul, >10^7 TU/mL

Lentiviral Particles: DDK w/ Puro mGFP w/ Puro

AAV Particle: DDK



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USD 1,007.00

7 Weeks*

Size
    • 200 ul

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Specifications

Product Data
Type Mouse Tagged ORF Clone
Tag Myc-DDK
Symbol Macroh2a1
Synonyms H2af; H2AF12; H2AF12M; H2afy; MACROH2; mH2a; mH2a1
Mammalian Cell Selection Puromycin
Vector pLenti-C-Myc-DDK-P2A-Puro
ACCN NM_001159515
ORF Size 1110 bp
Sequence Data
The ORF insert of this clone is exactly the same as(MR205680).
OTI Disclaimer The molecular sequence of this clone aligns with the gene accession number as a point of reference only. However, individual transcript sequences of the same gene can differ through naturally occurring variations (e.g. polymorphisms), each with its own valid existence. This clone is substantially in agreement with the reference, but a complete review of all prevailing variants is recommended prior to use. More info
OTI Annotation This clone was engineered to express the complete ORF with an expression tag. Expression varies depending on the nature of the gene.
Reference Data
RefSeq NM_001159515.1, NP_001152987.1
RefSeq Size 1966 bp
RefSeq ORF 1107 bp
Locus ID 26914
UniProt ID Q9QZQ8
Cytogenetics 13 B1
Gene Summary Histones are basic nuclear proteins that are responsible for the nucleosome structure of the chromosomal fiber in eukaryotes. Nucleosomes consist of approximately 146 bp of DNA wrapped around a histone octamer composed of pairs of each of the four core histones (H2A, H2B, H3, and H4). The chromatin fiber is further compacted through the interaction of a linker histone, H1, with the DNA between the nucleosomes to form higher order chromatin structures. This gene encodes a replication-independent histone that is a member of the histone H2A family. It replaces conventional H2A histones in a subset of nucleosomes where it represses transcription and participates in stable X chromosome inactivation. Alternative splicing results in multiple transcript variants encoding different isoforms. [provided by RefSeq, Nov 2015]

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