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  2. Enteropeptidase - Wikipedia

    en.wikipedia.org/wiki/Enteropeptidase

    Enteropeptidase (also called enterokinase) is an enzyme produced by cells of the duodenum and is involved in digestion in humans and other animals. Enteropeptidase converts trypsinogen (a zymogen ) into its active form trypsin , resulting in the subsequent activation of pancreatic digestive enzymes .

  3. Enterocyte - Wikipedia

    en.wikipedia.org/wiki/Enterocyte

    Enteropeptidase (also known as enterokinase) is responsible for activating pancreatic trypsinogen into trypsin, which activates other pancreatic zymogens. They are involved in the Krebs and the Cori Cycles and can be synthesized with lipase. Lipid uptake. Lipids are broken down by pancreatic lipase aided by bile, and then diffuse into the ...

  4. Histopathologic diagnosis of prostate cancer - Wikipedia

    en.wikipedia.org/wiki/Histopathologic_diagnosis...

    A histopathologic diagnosis of prostate cancer is the discernment of whether there is a cancer in the prostate, as well as specifying any subdiagnosis of prostate cancer if possible. The histopathologic subdiagnosis of prostate cancer has implications for the possibility and methodology of any subsequent Gleason scoring . [ 1 ]

  5. Trypsinogen - Wikipedia

    en.wikipedia.org/wiki/Trypsinogen

    Trypsinogen is activated by enteropeptidase (also known as enterokinase). Enteropeptidase is produced by the mucosa of duodenum and it cleaves the peptide bond of trypsinogen after residue 15, which is a lysine. The N-terminal peptide is discarded, and a slight rearrangement of the folded protein occurs.

  6. Serine protease - Wikipedia

    en.wikipedia.org/wiki/Serine_protease

    Coagulation factor levels may be required in the diagnosis of hemorrhagic or thrombotic conditions. Fecal elastase is employed to determine the exocrine activity of the pancreas, e.g., in cystic fibrosis or chronic pancreatitis. Serum prostate-specific antigen is used in prostate cancer screening, risk stratification, and post-treatment monitoring.

  7. ATP-dependent Clp protease proteolytic subunit - Wikipedia

    en.wikipedia.org/wiki/ATP-dependent_Clp_protease...

    This can be exploited by therapeutic agents, including by the hyperactivation of ClpP to cause selective cancer cell lethality. [16] Intracellular proteases have a role in bacterial virulence. Deletion of ClpP causes growth inhibition or loss of virulence in many bacterial species which makes them a good target for developing new antimicrobial ...