[1] Porta C, Paglino C, Mutti L. Ranpirnase and its potential for the treatment of unresectable malignant mesothelioma[J]. Biologics, 2008, 2(4):601-609. [2] Darzynkiewicz Z, Carter SP, Mikulski SM, et al. Cytostatic and cytotoxic effects of Pannon(P-30 Protein), a novel anticancer agent[J]. Cell Tissue Kinet, 1988, 21(3):169-182. [3] Ardelt W, Mikulski SM, Shogen K, et al. Amino acid sequence of an anti-tumor protein from Rana pipiens oocytes and early embryos. Homology to pancreatic ribonucleases[J]. J Biol Chem, 1991, 266(1):245-251. [4] 田雪, 王庆诚, 沈如凌, 等. Onconase研究与开发的最新进展[J]. 中国细胞生物学报, 2010, 32(6):927-934. [5] Leland PA, Schultz LW, Kim BM, Raines RT. Ribonuclease A variants with potent cytotoxic activity[J]. Proc Nat Acad Sci USA, 1998, 95(18):10407-10412. [6] Iohnson RJ, Chao TY, Lavis LD, et al. Cytotoxic ribonucleases:The dichotomy of coulombic forces[J]. Biochemistry, 2007, 46(36):10308-10316. [7] Chang CH, Gupta P, Michel R, et al. Ranpirnase(frog RNase)targeted with a humanized, internalizing, anti-Trop-2 antibody has potent cytotoxicity against diverse epithelial cancer cells[J]. Mol Cancer Ther, 2010, 9(8):2276-2286. [8] Qiao M, Zu LD, He XH, et al. Onconase downregulates microRNA expression through targeting microRNA precursors[J]. Cell Res, 2012, 22(7):1199-1202. [9] 汪楠, 唐小军, 熊四平, 等. 重组豹蛙酶的制备及其生物学特性分析[J]. 南京医科大学学报, 2013, 33(8):1034-1038. [10] 胡晓珺. 核糖核酸酶Onconase及其融合蛋白表达[D]. 上海:华东理工大学, 2012. [11] 郭红, 徐殿胜, 王庆诚. 核糖核酸酶Onconase的稀释复性条件优化研究[J]. 化学与生物工程, 2013, 10(30):57-60. [12] 何庆. 糖基化和非糖基化Onconase在巴斯德毕赤酵母中的分泌表达、纯化与活性鉴定[D]. 北京:中国人民解放军军事医学科学院, 2009. [13] 贾茜, 刘文献, 赵伟, 等. 一种重组人血清白蛋白的纯化方法及其应用:中国, 101768206A, 1[P]. 2008-12-30. [14] 徐存拴, 史世领, 史世会, 等. 一种表达人血清白蛋白的质粒和重组菌以及它们的应用:中国, 103194482A, 1[P]. 2013-3-12. [15] Kratz F. Albumin as a drug carrier:design of prodrugs, drug conj-ugates and nanoparticles[J]. J Control Release, 2008, 132(3):171-183. [16] 王康, 王强, 张磊. SRB 法和MTT法检测PDGF-BB对牛眼小梁细胞增殖的影响[J]. 滨州医学院学报, 2012, 35(1):10-12. [17] Mellitzer A, Weis R, Glieder A, et al. Expression of lignocellulolytic enzymes in Pichia pastoris[J]. Microb Cell Fact, 2012, 2012(11):61-72. [18] Sygmund C, Gutmann A, Krondorfer I, et al. Simple and efficient expression of Agaricus meleagris pyranose dehydrogenase in Pichia pastoris[J]. Appl Microbiol Biotechnol, 2012, 94(3):695-704. [19] Abad S, Nahalka J, Winkler M, et al. High-level expression of Rhodotorula gracilis D-amion acid oxidase in Pichia pastoris[J]. Biotechnol Lett, 2011, 33(3):557-563. [20] Spatz SJ, Volkening JD, Mullis R, et al. Expression of chicken parvovirus VP2 in chicken embryo fibroblasts require codon optimization for production of naked DNA and Vecored meleagrid herpesvirus type 1 vaccine[J]. Virus Genes, 2013, 47(2):259-267. [21] Park S, Pack SP, Lee J. Expression of codon-optmiazed phosphoen-olpyruvate carboxylase gene from Glaciecola sp. HTCC2999 in Es-cherichia coli and its application for C4 chemical production[J]. Appl Biochem Biotech, 2012, 167(7):1845-1853. [22] Geng SS, Feng J, Li Y, et a1. Binding activity difference of anti-CD20 scFv-Fc fusion protein derived from variable domain exchange[J]. Cell Mol Immunol, 2006, 3(6):439-443. [23] Tranchant I, Herve AC, Carlisle S, et a1. Design and synthesis of ferrocene probe molecules for detection by electrochemical methods[J]. Bioconjug Chem, 2006, 17(5):1256-1264. [24] Gustavsson M, Lehti? J, Denman S, et a1. Stable linker peptides for a cellulose-binding domain-lipase fusion protein expressed in Pichia pastoris[J]. Protein Eng, 2001, 14(9):711-715. [25] Le Gall F, Reusch U, Little M, et a1. Effect of linker sequences between the antibody variable domains on the formation, stability and biological activity of a bispecific tandem diabody[J]. Protein Eng Des Sel, 2004, 17(4):357-366. [26] Hu W, Li F, Yang X, et al. A flexible peptide linker enhances the immunoreactivity of two copies HBsAg preSl(21-47)fusion protein[J]. J Biotechnol, 2004, 107(1):83-90. [27] Ha SH, Park JJ, Kim JW, et al. Molecular cloning and high-level expression of G2 protein of hantaan(HTN)virus 76-118 strain in the yeast Pichia pastoris KM71[J]. Virus Genes, 2001, 22(2):167-173. [28] Arai R, Ueda H, Kitayama A, et al. Design of the linkers which effectively separate domains of a bifunctional fusion protein[J]. Protein Eng, 2001, 14(8):529-532. [29] Wriggers W, Chakravarty S, Jennings PA. Control of protein functional dynamics by peptide linkers[J]. Biopolymers, 2005, 80(6):736-746. |