Ribonuclease pancreatic is an enzyme that in humans is encoded by the RNASE1gene.[1][2]
Function
This gene encodes a member of the pancreatic-type of secretory ribonucleases, a subset of the ribonuclease A super-family. The encoded endonuclease cleaves internal phosphodiester RNA bonds on the 3'-side of pyrimidine bases. It prefers poly(C) as a substrate and hydrolyses 2',3'-cyclic nucleotides, with a pH optimum near 8.0. The encoded protein is monomeric and more commonly acts to degrade ss-RNA over ds-RNA. Alternative splicing occurs at this locus and four transcript variants encoding the same protein have been identified.[2]
References
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Schienman JE, Holt RA, Auerbach MR, Stewart CB (Aug 2006). "Duplication and divergence of 2 distinct pancreatic ribonuclease genes in leaf-eating African and Asian colobine monkeys". Molecular Biology and Evolution. 23 (8): 1465–79. doi:10.1093/molbev/msl025. PMID16751256.
Sakakibara R, Hashida K, Kitahara T, Ishiguro M (Mar 1992). "Characterization of a unique nonsecretory ribonuclease from urine of pregnant women". Journal of Biochemistry. 111 (3): 325–30. PMID1587793.
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Mizuta K, Awazu S, Yasuda T, Kishi K (Aug 1990). "Purification and characterization of three ribonucleases from human kidney: comparison with urine ribonucleases". Archives of Biochemistry and Biophysics. 281 (1): 144–51. doi:10.1016/0003-9861(90)90424-W. PMID2383019.
Beintema JJ, Wietzes P, Weickmann JL, Glitz DG (Jan 1984). "The amino acid sequence of human pancreatic ribonuclease". Analytical Biochemistry. 136 (1): 48–64. doi:10.1016/0003-2697(84)90306-3. PMID6201087.
Russo N, de Nigris M, Ciardiello A, Di Donato A, D'Alessio G (Aug 1995). "Expression in mammalian cells, purification and characterization of recombinant human pancreatic ribonuclease". FEBS Letters. 369 (2–3): 352. doi:10.1016/0014-5793(95)96890-G. PMID7649283.
Seno M, Futami J, Kosaka M, Seno S, Yamada H (Aug 1994). "Nucleotide sequence encoding human pancreatic ribonuclease". Biochimica et Biophysica Acta. 1218 (3): 466–8. doi:10.1016/0167-4781(94)90208-9. PMID8049276.
Klink TA, Woycechowsky KJ, Taylor KM, Raines RT (Jan 2000). "Contribution of disulfide bonds to the conformational stability and catalytic activity of ribonuclease A". European Journal of Biochemistry / FEBS. 267 (2): 566–72. doi:10.1046/j.1432-1327.2000.01037.x. PMID10632727.
Pous J, Canals A, Terzyan SS, Guasch A, Benito A, Ribó M, Vilanova M, Coll M (Oct 2000). "Three-dimensional structure of a human pancreatic ribonuclease variant, a step forward in the design of cytotoxic ribonucleases". Journal of Molecular Biology. 303 (1): 49–60. doi:10.1006/jmbi.2000.4506. PMID11021969.
Pous J, Mallorquí-Fernández G, Peracaula R, Terzyan SS, Futami J, Tada H, Yamada H, Seno M, de Llorens R, Gomis-Rüth FX, Coll M (Apr 2001). "Three-dimensional structure of human RNase 1 delta N7 at 1.9 A resolution". Acta Crystallographica Section D. 57 (Pt 4): 498–505. doi:10.1107/S0907444901001147. PMID11264578.
Gaur D, Swaminathan S, Batra JK (Jul 2001). "Interaction of human pancreatic ribonuclease with human ribonuclease inhibitor. Generation of inhibitor-resistant cytotoxic variants". The Journal of Biological Chemistry. 276 (27): 24978–84. doi:10.1074/jbc.M102440200. PMID11342552.
Futami J, Maeda T, Kitazoe M, Nukui E, Tada H, Seno M, Kosaka M, Yamada H (Jun 2001). "Preparation of potent cytotoxic ribonucleases by cationization: enhanced cellular uptake and decreased interaction with ribonuclease inhibitor by chemical modification of carboxyl groups". Biochemistry. 40 (25): 7518–24. doi:10.1021/bi010248g. PMID11412105.
Canals A, Pous J, Guasch A, Benito A, Ribó M, Vilanova M, Coll M (Oct 2001). "The structure of an engineered domain-swapped ribonuclease dimer and its implications for the evolution of proteins toward oligomerization". Structure. 9 (10): 967–76. doi:10.1016/S0969-2126(01)00659-1. PMID11591351.