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PTRH2 Validated sgRNA vector

For research use only. Not intended for any clinical use.

Cat. No. :   SKO0984

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Cat. No. SKO0984
Description Creative Biogene develops and optimizes genome editing technology to produce stable genome edited mammalian cell lines serving a wide-range of R&D activities in areas of basic research, diagnostic and therapeutic development. Our premade SuperKO sgRNA vectors are tailor-made to target many different genes respectively. We have successfully constructed a series of knockout cell lines using those sgRNAs.
Gene Abbr PTRH2
Reporter mCherry
Promoter U6
Resistance Amp
Selection Ampicillin
Vector Type Lentiviral Expression
Vector Length 7677 bp
Target Gene PTRH2
Background The protein encoded by this gene is a mitochondrial protein with two putative domains, an N-terminal mitochondrial localization sequence, and a UPF0099 domain. In vitro assays suggest that this protein possesses peptidyl-tRNA hydrolase activity, to release the peptidyl moiety from tRNA, thereby preventing the accumulation of dissociated peptidyl-tRNA that could reduce the efficiency of translation. This protein also plays a role regulating cell survival and death. It promotes survival as part of an integrin-signaling pathway for cells attached to the extracellular matrix (ECM), but also promotes apoptosis in cells that have lost their attachment to the ECM, a process called anoikos. After loss of cell attachment to the ECM, this protein is phosphorylated, is released from the mitochondria into the cytosol, and promotes caspase-independent apoptosis through interactions with transcriptional regulators. This gene has been implicated in the development and progression of tumors, and mutations in this gene have been associated with an infantile multisystem neurologic, endocrine, and pancreatic disease (INMEPD) characterized by intellectual disability, postnatal microcephaly, progressive cerebellar atrophy, hearing impairment, polyneuropathy, failure to thrive, and organ fibrosis with exocrine pancreas insufficiency (PMID: 25574476). Alternative splicing results in multiple transcript variants encoding different isoforms. [provided by RefSeq, Mar 2015]
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