NSA2/TINP1 cDNA ORF Clone in Cloning Vector, Mouse


NSA2/TINP1 cDNA ORF Clone in Cloning Vector, Mouse: General Information

NCBI Ref Seq
RefSeq ORF Size
783 bp
Sequence Description
Identical with the Gene Bank Ref. ID sequence.
Full length Clone DNA of Mouse NSA2 ribosome biogenesis homolog (S. cerevisiae).
Sequencing Primers
SP6 and T7 or M13-47 and RV-M
Quality Control
The plasmid is confirmed by full-length sequencing.
Antibiotic in E.coli
Storage & Shipping
Each tube contains lyophilized plasmid.
The lyophilized plasmid can be stored at ambient temperature for three months.

NSA2/TINP1 cDNA ORF Neucleotide Sequence and Amino Acid Sequence Information

**Sino Biological guarantees 100% sequence accuracy of all synthetic DNA constructs we deliver, but we do not guarantee protein expression in your experimental system. Protein expression is influenced by many factors that may vary between experiments or laboratories.**

NSA2/TINP1 cDNA ORF Clone in Cloning Vector, Mouse: Alternative Names

5730427N09Rik cDNA ORF Clone, Mouse; LNR42 cDNA ORF Clone, Mouse; Nsa2p cDNA ORF Clone, Mouse; Tinp1 cDNA ORF Clone, Mouse; Yr29 cDNA ORF Clone, Mouse

NSA2/TINP1 Background Information

NSA2 (Nop seven-associated 2) was previously identified in a high throughput screen of novel human genes associated with cell proliferation, and the NSA2 protein is evolutionarily conserved across different species. Nop-7-associated 2 (NSA2) originally described in yeast as a nuclear protein involved in ribosomal biogenesis, is a hyperglycemia induced gene involved in diabetic nephropathy [Shahni et al., Elevated levels of renal and circulating Nop-7-associated 2 (NSA2) in rat and mouse models of diabetes, in mesangial cells in vitro and in patients with diabetic nephropathy. Nop-7-associated 2 (NSA2), which is involved in ribosomal biogenesis in yeast and is a putative cell cycle regulator in mammalian cells, is elevated in the kidney of Goto-Kakizaki (GK) rat, a spontaneous model of type 2 diabetes.
Full Name
NSA2 ribosome biogenesis homolog (S. cerevisiae)
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