LYG1 cDNA ORF Clone, Human, N-Myc tag

Cat: HG13457-NM
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LYG1 cDNA ORF Clone, Human, N-Myc tag 基本信息
基因
种属
Human
NCBI 参考序列号
参考序列ORF长度
585 bp
描述
Full length Clone DNA of Human lysozyme G-like 1 with N terminal Myc tag.
质粒
启动子
Enhanced CMV promoter
载体
pCMV3-SP-N-Myc
标签序列
Myc Tag Sequence: GAGCAGAAACTCATCTCAGAAGAGGATCTG
测序引物
T7( 5' TAATACGACTCACTATAGGG 3' )
BGH( 5' TAGAAGGCACAGTCGAGG 3' )
质控
The plasmid is confirmed by full-length sequencing.
筛选
抗生素(大肠杆菌)
Kanamycin
抗生素(哺乳动物细胞)
Hygromycin
应用
Stable or Transient mammalian expression
储存 & 运输
运输
Each tube contains lyophilized plasmid.
储存
The lyophilized plasmid can be stored at ambient temperature for three months.

**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.**

LYG1 cDNA ORF Clone, Human, N-Myc tag Alternative Names
SALW1939 cDNA ORF Clone, Human
LYG1 Background Information

Lysozyme G-like 1 belongs to the glycosyl hydrolase 23 family. Glycoside hydrolases are a widespread group of enzymes that hydrolyse the glycosidic bond between two or more carbohydrates, or between a carbohydrate and a non-carbohydrate moiety. Lysozyme G-like 1 exhibits hydrolase activity, acting on glycosyl bonds (inferred); lysozyme activity (inferred). It is found in extracellular region and may functions in cell wall macromolecule catabolic process, metabolic process and peptidoglycan catabolic process. The lysozyme G gene structure has been largely conserved during vertebrate evolution, except at the 5' end of the gene, which varies in number of exons.

Full Name
lysozyme G-like 1
References
  • EIrwin DM, et al. (2003) Molecular evolution of vertebrate goose-type lysozyme genes. J Mol Evol. 56(2):234-42.
  • Gerhard DS, et al. (2004) The status, quality, and expansion of the NIH full-length cDNA project: the Mammalian Gene Collection (MGC). Genome Res. 14(10B):2121-7.
  • Sklar P, et al. (2011) Large-scale genome-wide association analysis of bipolar disorder identifies a new susceptibility locus near ODZ4. Nat Genet. 43(10):977-83.
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