Gene/Protein Disease Symptom Drug Enzyme Compound
Pivot Concepts:   Target Concepts:
Query: EC:3.1.27.4 (ribonuclease)
6,621 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Infusion of cycloheximide i.v., an antibiotic known to inhibit synthesis of protein, at a rate of 0.2 mg/kg/hr, reliably caused lysis of fever in 15 chronically febrile patients with Hodgkin's disease who did not have detectable bacterial, fungal, or viral infection. Antipyretic effects were also seen in some patients with reticulum cell sarcoma, lymphosarcoma, acute leukemia, histiocytic medullary reticulosis, plasma cell myeloma, carcinoma of the lung, and carcinoma of the cervix. The drug failed to produce defervescence in four patients with normal granulocyte reserves, who were febrile due to bacterial infection. When infused at a rate of 0.2 mg/kg/hr, the drug apparently caused an acute alteration of protein metabolism in man in that plasma amino acid nitrogen rose acutely while plasma levels of muramidase and ribonuclease fell during the period of the infusion. The data suggest that continuing synthesis of protein may be involved in nonbacterial fever of neoplastic disease. Mammalian granulocytes and monocytes are known to elaborate a pyrogenic protein following appropriate stimulation; it is suggested that in some types of neoplastic disease, particularly Hodgkin's disease, tumor cells may produce and release a pyrogenic protein and that drug-induced inhibition of its synthesis is responsible for the observed lysis of fever.
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PMID:Antipyretic effect of cycloheximide, and inhibitor of protein synthesis, in patients with Hodgkin's disease or other malignant neoplasms. 109 49

The clinical significance of serum ribonuclease (RNase) assay in acute leukemia was studied. Serum RNases were assayed by the method of Akagi et al. with slight modifications in the serum samples obtained from 50 cases of healthy subjects, 55 cases of acute leukemia before therapy, 18 chronic myelocytic leukemia before therapy, 13 chronic myelocytic leukemia under treatment and 20 reactive leukocytosis. The ratio of acid RNase to alkaline RNase activities (Ac/Al ratio) was statistically increased in acute promyelocytic leukemia, acute myeloblastic leukemia [M2], acute myelocytic leukemia and erythroleukemia (leukemic stage) compared with those in healthy subjects (P less than 0.001). All cases of acute promyelocytic leukemia and most of the acute myeloblastic leukemia [M2], acute myelomonocytic leukemia and erythroleukemia cases had an Ac/Al ratio of above 1.0. In remission of acute leukemia, it is noteworthy that acid and alkaline activities showed no substantial difference from those of healthy subjects. While, on relapse of acute leukemia cases, showing Ac/Al ratio above 1.0 in pretreatment state, Ac/Al ratio increased to above 1.0. Thus, the assay of serum RNases and the calculation of Ac/Al ratio might be an additional method for diagnosing acute leukemia and for assessing their remission and recurrence in some type of acute leukemia.
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PMID:[Clinical significance of serum ribonuclease (RNase) assay in acute leukemia]. 357 9

Acute myeloid leukemia is the most common acute leukemia affecting adults, and its incidence increases with age. Along with chromosomal translocations in leukemic cells mutations in the genes of receptor tyrosine kinases KIT and FLT3 were found with a high frequency. Here we show that transgenic progenitor of B-cells BAF3/FLT3-ITD are much more sensitive to the ribonuclease binase cytotoxic effects than the original BAF3 cells. The principal difference between BAF3/FLT3-ITD and the original BAF3 cells is the expression of FLT3-ITD oncogene, which leads to a change in the normal cell signaling pathways. Earlier, we described a similar effect for the cytotoxic action of binase on Kasumi-1 and FDC-P1-N822K cells, which express the activated KIT-N822K oncogene. Increased binase cytotoxicity toward the cells, expressing FLT3-ITD oncogene, suggests that, as in the case of FDC-P1 cells, transduced by KIT oncogene, the expression of an activated oncogene determines the sensitivity of cells to binase.
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PMID:[Expression of FLT3-ITD oncogene confers mice progenitor B-cells BAF3 sensitivity to the ribonuclease binase cytotoxic action]. 2380 62