The protein encoded by this gene is an exceedingly potent mediator of new blood vessel formation. It hydrolyzes cellular tRNAs resulting in decreased protein synthesis and is similar to pancreatic ribonuclease. Alternative splicing results in two transcript variants encoding the same protein. This gene and the gene that encodes ribonuclease, RNase A family, 4 share promoters and 5' exons. Each gene splices to a unique downstream exon that contains its complete coding region. [provided by RefSeq, Jul 2008]
Function
DNA binding; actin binding; copper ion binding; endonuclease activity; endoribonuclease activity, producing 3'-phosphomonoesters; heparin binding; peptide binding; protein binding; rRNA binding; receptor binding; ribonuclease activity
Synonyms
ANG; angiogenin, ribonuclease, RNase A family, 5; ALS9; RAA1; HEL168; RNASE4; RNASE5; angiogenin; RNase 5; ribonuclease 5; ribonuclease A A1; epididymis luminal protein 168
Citations
Publication ()
Have you cited CDBP5057 in a publication? Let us know and earn a reward for your research.
Creative Diagnostics products are for RESEARCH USE ONLY, please make sure your review is research based.
Required fields are marked with *
Terms and conditions:
We will select high-quality review customers and offer a $30 coupon for your next purchase.
All product reviews must be submitted in the English language.
Creative Diagnostics will not share any personal information of applicants, and all information will be treated with strict confidentiality and will not be sold or disclosed to a third party.
References
The Return of Planning in China: Comment on Heilmann-Melton and Hu Angang
Heilmann and Melton break important new ground in describing the revival of development planning in China and showing how planning is now interwoven with other aspects of the political system, particularly policy formulation and cadre evaluation. Clarification of the instruments planners use and their link to developmental outcomes would improve the argument. Although planners believe their plans are consistent with a market economy, it may turn out that the revival of planning after 2003 was purchased at the cost of significant distortions in the market economy and reduced efficiency.
The Development of Advanced HSLA Steel in Angang in Low Carbon Age
The structure steel industry has experienced a revolution during four decades. Faced the challenge of global change in climate and environments, the higher strength, higher ductility steels, environment friendly steel were needed. The R and D for high strength steel production and application in Angang has made impressive progress. However more attention had been paid on the development of new type high strength steels with higher strength and better properties. The multi-phase microstructure, lower y/s, and corrosion resistance performance structure steel results in new generation advanced high strength steel which have properties that are often much superior to those exhibited by the old steels. This paper presents a general review of new generation high strength steel research and development in Angang and predicts the development for advanced high strength steel in the foreseeable future.