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The protein encoded by MSMB is a member of the immunoglobulin binding factor family. Additionally we are shipping Microseminoprotein, beta Antibodies (101) and Microseminoprotein, beta Kits (31) and many more products for this protein.
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this meta-analysis indicates that MSMB gene rs10993994 polymorphism increases the risk of PC.
PSP94 levels differed among idiopathic pulmonary fibrosis, pulmonary sarcoidosis and chronic pulmonary obstructive disease.
Results identified CRISP2 (show CRISP2 Proteins) as a potential binding protein of PSP94 from human sperm.
decreased expression of MSMB parallels the clinical progression of PC and adjusted serum MSMB levels are associated with PC risk
Based on nasopharyngeal MSP gene expression in readily available Nasopharyngeal aspirate samples , we can discriminate between severity of disease in Respiratory syncytial virus infected infants.
PSP94 regulate the Lin28 (show LIN28A Proteins)/Let-7 loop in ovarian cancer cells.
Data indicate that prostate secretory protein PSP94 is decreased in an ovarian cancer drug-resistant cell line, and plays an important role in the development of drug resistance in vitro.
The rs10993994 genotype in the MSMB gene modifies the association between number of sexual partners and prostate cancer risk.
Beta-microseminoprotein in urine was statistically lower in prostate cancer patients.
Two SNPs, in beta-microseminoprotein at and in kallikrein-related peptidase 2 (show KLK2 Proteins) at, are associated with PCA3 score at genome-wide significance level
NMR structure of beta-microseminoprotein
Establishment and characterization of PSP94 antibodies contribute to the potential for PSP94 as a new vector gene for prostate cancer gene therapy
The protein encoded by this gene is a member of the immunoglobulin binding factor family. It is synthesized by the epithelial cells of the prostate gland and secreted into the seminal plasma. This protein has inhibin-like activity. It may have a role as an autocrine paracrine factor in uterine, breast and other female reproductive tissues. The expression of the encoded protein is found to be decreased in prostate cancer. Two alternatively spliced transcript variants encoding different isoforms are described for this gene. The use of alternate polyadenylation sites has been found for this gene.
, immunoglobulin binding factor
, prostate secreted seminal plasma protein
, prostate secretory protein of 94 amino acids
, seminal plasma beta-inhibin
, prostate secretory protein PSP94
, PSP94-like protein
, microseminoprotein, beta-
, prostatic secretory protein (PSP-94)
, prostatic inhibin protein