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Facts about Ubiquitin carboxyl-terminal hydrolase 38.
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Mouse | |
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Gene Name: | Usp38 |
Uniprot: | Q8BW70 |
Entrez: | 74841 |
Belongs to: |
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peptidase C19 family |
Deubiquitinating enzyme 38; EC 3.4.19.12; HP43.8KDFLJ35970; KIAA1891ubiquitin specific protease 38; ubiquitin carboxyl-terminal hydrolase 38; ubiquitin specific peptidase 38; ubiquitin thioesterase 38; Ubiquitin thiolesterase 38; Ubiquitin-specific-processing protease 38
Mass (kDA):
116.102 kDA
Mouse | |
---|---|
Location: | 8 C2|8 38.68 cM |
Sequence: | 8; |
Boster Bio Anti-USP38 Marker is a rabbit IgG antibody that reacts to Human. This antibody can keep at -20degC up to one year and at 4degC up to a month. Its applications and citations are discussed below. This article is meant to give background on Steven Boster.
Bostern Bio has developed the Anti-USP38 marker in rabbit IgG antibodies that react with Human USP38. This antibody is used in Western Blot and Enzyme-Linked Immunosorbent Assay experiments. It can be found in the Boster bio catalog under the code "A13191". It is also sold in a reagent set that contains a human IgG, diluted with phosphate buffered salt.
The USP38 proteins consists of two domains. These domains interact with E protein and were identified by co-immunoprecipitation (Co-IP). Furthermore, co-IP experiments showed that the interaction patterns of ZIKV's and USP38 E protein have similar patterns.
The USP38 proteins are involved in DNA repair, inflammation, ciliopathies and DNA damage repair. Its low level of expression may contribute to cancer. It has been implicated by many diseases including asthma and ciliopathies. It also regulates inflammation and histone modifications. This protein can be used as a therapeutic agent by the research community. The Anti-USP38 Marker at Boster Bio is an excellent option for the detection of cancerous cells.
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Steve Boster, a Joliet resident, was born June 6, 1925. He was a long-standing manager in retail for many years. He was also a Concordia Hall Member in Staunton. Steve Boster is also the proud uncle of several nieces.
The USP38 marker has been used for determining the level of USP38 in various human tissues. This gene is highly expressed and has many applications, including research in cancer and diagnostics. Although it is not clear what its function is, it has been implicated as a cause of many diseases and has many clinical applications. Here are some examples of the most common uses of the USP38 marker. Let's have a closer look at the gene.
The USP38 Gene is essential for the growth of cells. The USP38 Gene is found in many tissues. The USP38 genes is located at the cell surface. It is therefore vital to find this protein in other tissues. The USP38 protein is responsible for a number of important functions in human body tissues, including cell growth and development, immune responses, and many other diseases.
The USP38 gene regulates many genes that are related to cancer stem cells. The gene has been implicated with tumor immunity as well as Th2 immune response. USP38 plays a role in the mRNA levels of these genes. Its expression in tumors may therefore be related to the type and intensity of an individual's immune response. This gene is highly expressed in the lungs and serves multiple functions.
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USP38's deubiquitinase regulates HDAC3, the protein that controls acetylation. It regulates HDAC3 activity to control the expression and function of cancer stem cell-related gene genes. Although it is down-regulated by colorectal cancer, it is an important regulator HDAC3 expression. It could also be a target for histone acetylase inhibiters.
The USP38 gene is also implicated in allergic asthma. A study on mice infected with OVA + Alum with the USP38 gene showed a significant decrease in total BALF cells. This reduction was observed for both T lymphocyte subpopulations and eosinophils. The study also assessed USP38 for the analysis T lymphocyte subpopulations within the lung. The lungs were cultured in pulmonary mediastinal lymphodes and given Ionomycin and PMA to investigate the role of USP38. These cells were depleted by cytoflow analysis.
PMID: 16141072 by Carninci P., et al. The transcriptional landscape of the mammalian genome.
PMID: 21183079 by Huttlin E.L., et al. A tissue-specific atlas of mouse protein phosphorylation and expression.