Literature for inhibitor I25.014: phytocystatin

Summary Gene structure Alignment Tree Sequences Sequence features Distribution Structure Literature

(Topics flags: S Structure, E Expression, V Review. To select only the references relevant to a single topic, click the link above. See explanation.)

    2024
  1. Liu,Y., Gong,T., Kong,X., Sun,J. and Liu,L.
    XYLEM CYSTEINE PEPTIDASE 1 and its inhibitor CYSTATIN 6 regulate pattern-triggered immunity by modulating the stability of the NADPH oxidase RBOHD
    Plant Cell36, 471-488. PubMed  Europe PubMed DOI
  2. 2023
  3. Premachandran,K. and Srinivasan,T.S.
    A brief review on oryzacystatin: a potent phytocystatin for crop management
    Mol Biol Rep50, 1799-1807. PubMed  Europe PubMed DOI
  4. Santos,N.P., Brandstetter,H. and Dall,E.
    Arabidopsis thaliana Phytocystatin 6 Forms Functional Oligomer and Amyloid Fibril States
    Biochemistry62, 3420-3429. PubMed  Europe PubMed DOI
  5. 2021
  6. Alomrani,S., Kunert,K.J. and Foyer,C.H.
    Papain-like cysteine proteases are required for the regulation of photosynthetic gene expression and acclimation to high light stress
    J Exp Bot PubMed  Europe PubMed DOI
  7. da Costa,F.C., Jr., Rodriguez,V.M.O., Soares-Costa,A., Cirelli,J.A., Justino,D.M.N., Roma,B., Zambuzzi,W.F. and Faria,G.
    Cystatin-like protein of sweet orange (CsinCPI-2) modulates pre-osteoblast differentiation via beta-Catenin involvement
    J Mater Sci Mater Med32, 33-33. PubMed  Europe PubMed DOI
  8. Premachandran,K., Srinivasan,T.S. and Wilson Alphonse,C.R.
    In silico approach on sequential and structural variability in oryzacystatin and its interaction with cysteine protease enzymes of insect
    Phytochemistry186, 112728-112728. PubMed  Europe PubMed DOI
  9. 2020
  10. Lima,A.M., Barros,N.L.F., Freitas,A.C.O., Tavares,L.S.C., Pirovani,C.P., Siqueira,A.S., Goncalves,E.C. and de Souza,C.R.B.
    A new Piper nigrum cysteine proteinase inhibitor, PnCPI, with antifungal activity: molecular cloning, recombinant expression, functional analyses and molecular modeling
    Planta252, 16-16. PubMed  Europe PubMed DOI
  11. Mishra,M., Singh,V., Tellis,M.B., Joshi,R.S., Pandey,K.C. and Singh,S.
    Cyclic peptide engineered from phytocystatin inhibitory hairpin loop as an effective modulator of falcipains and potent antimalarial
    J Biomol Struct Dyn1-13. PubMed  Europe PubMed DOI
  12. Moura,G.T., Souza,A.A., Garay,A.V., Freitas,S.M. and Valadares,N.F.
    Crystal structure and physicochemical characterization of a phytocystatin from Humulus lupulus: Insights into its domain-swapped dimer
    Biochim Biophys Acta Proteins Proteom1869, 140541-140541. PubMed  Europe PubMed DOI
  13. [YEAR:1-6-2020]Schneider,V.K., da Silva Ferrara,T.F., Rocha,S.V., Santos-Júnior,C.D., Neo-Justino,D.M., da Cunha,A.F., de Oliveira da Silva JPM, Dos Santos Tersariol,I.L., Carmona,A.K., Henrique-Silva,F. and Soares-Costa,A.
    Recombinant expression, characterization and phylogenetic studies of novels cystatins-like proteins of sweet orange (Citrus sinensis) and clementine (Citrus clementina)
    Int J Biol Macromol152, 546-553. PubMed  Europe PubMed
  14. Shibao,P.Y.T., Santos-Junior,C.D., Santiago,A.C., Mohan,C., Miguel,M.C., Toyama,D., Vieira,M.A.S., Narayanan,S., Figueira,A., Carmona,A.K., Schiermeyer,A., Soares-Costa,A. and Henrique-Silva,F.
    Sugarcane cystatins: From discovery to biotechnological applications
    Int J Biol Macromol167, 676-686. PubMed  Europe PubMed DOI  V
  15. 2019
  16. Feroz,A., Khaki,P.S.S., Siddiqui,A.A., Amin,F., Khan,M.S. and Bano,B.
    Purification and characterization of a cystatin like thiol protease inhibitor from Brassica nigra
    Int J Biol Macromol125, 1128-1139. PubMed  Europe PubMed DOI
  17. Siddiqui,M.F. and Bano,B.
    Probing the binding effects of zinc and cadmium with garlic phytocystatin: implication of the abiotic stress on garlic phytocystatin
    Int J Biol Macromol133, 945-956. PubMed  Europe PubMed DOI
  18. 2018
  19. Aceituno-Valenzuela,U., Covarrubias,M.P., Aguayo,M.F., Valenzuela-Riffo,F., Espinoza,A., Gaete-Eastman,C., Herrera,R., Handford,M. and Norambuena,L.
    Identification of a type II cystatin in Fragaria chiloensis: a proteinase inhibitor differentially regulated during achene development and in response to biotic stress-related stimuli
    Plant Physiol Biochem129, 158-167. PubMed  Europe PubMed DOI
  20. Bhat,S.A., Bhat,W.F., Afsar,M., Khan,M.S., Al-Bagmi,M.S. and Bano,B.
    Modification of chickpea cystatin by reactive dicarbonyl species: glycation, oxidation and aggregation
    Arch Biochem Biophys650, 103-115. PubMed  Europe PubMed DOI
  21. Chen,G.Q., Zhang,D. and Shen,X.H.
    Cloning and characterization of ApCystatin, a plant cystatin gene from Agapanthus praecox ssp. orientalis responds to abiotic stress
    Protein Expr Purif149, 66-74. PubMed  Europe PubMed DOI
  22. Christova,P.K., Christov,N.K., Mladenov,P.V. and Imai,R.
    The wheat multidomain cystatin TaMDC1 displays antifungal, antibacterial, and insecticidal activities in planta
    Plant Cell Rep37, 923-932. PubMed  Europe PubMed DOI
  23. 2017
  24. Ahmed,A., Shamsi,A. and Bano,B.
    Oxadiargyl induced conformational transition of cystatin isolated from yellow mustard seeds: biophysical and biochemical approach
    Int J Biol Macromol98, 802-809. PubMed  Europe PubMed DOI
  25. Monteiro Junior,J.E., Valadares,N.F., Pereira,H.D., Dyszy,F.H., da Costa Filho,A.J., Uchoa,A.F., de Oliveira,A.S., da Silveira Carvalho,C.P. and Grangeiro,T.B.
    Expression in Escherichia coli of cysteine protease inhibitors from cowpea (Vigna unguiculata): the crystal structure of a single-domain cystatin gives insights on its thermal and pH stability
    Int J Biol Macromol102, 29-41. PubMed  Europe PubMed DOI  E  S
  26. Prabucka,B., Mielecki,M., Chojnacka,M., Bielawski,W., Czarnocki-Cieciura,M. and Orzechowski,S.
    Structural and functional characterization of the triticale (x Triticosecale Wittm.) phytocystatin TrcC-8 and its dimerization-dependent inhibitory activity
    Phytochemistry142, 1-10. PubMed  Europe PubMed DOI
  27. Siddiqui,M.F., Ahmed,A. and Bano,B.
    Insight into the biochemical, kinetic and spectroscopic characterization of garlic (Allium sativum) phytocystatin: implication for cardiovascular disease
    Int J Biol Macromol95, 734-742. PubMed  Europe PubMed DOI
  28. Subburaj,S., Zhu,D., Li,X., Hu,Y. and Yan,Y.
    Molecular characterization and expression profiling of Brachypodium distachyon L. cystatin genes reveal high evolutionary conservation and functional divergence in response to abiotic stress
    Front Plant Sci8, 743-743. PubMed  Europe PubMed DOI
  29. Tan,Y., Li,M., Yang,Y., Sun,X., Wang,N., Liang,B. and Ma,F.
    Overexpression of MpCYS4, a phytocystatin gene from Malus prunifolia (Willd.) Borkh., enhances stomatal closure to confer drought tolerance in transgenic Arabidopsis and apple
    Front Plant Sci8DOI
  30. Tan,Y., Yang,Y., Li,C., Liang,B., Li,M. and Ma,F.
    Overexpression of MpCYS4, a phytocystatin gene from Malus prunifolia (Willd.) Borkh., delays natural and stress-induced leaf senescence in apple
    Plant Physiol Biochem115, 219-228. PubMed  Europe PubMed DOI
  31. Yu,Y., Zhang,G., Li,Z., Cheng,Y., Gao,C., Zeng,L., Chen,J., Yan,L., Sun,X., Guo,L. and Yan,Z.
    Molecular cloning, recombinant expression and antifungal activity of BnCPI, a cystatin in ramie (Boehmeria nivea L.)
    Genes (Basel)8, PubMed  Europe PubMed DOI
  32. 2016
  33. Ahmed,A., Shamsi,A. and Bano,B.
    Purification and biochemical characterization of phytocystatin from Brassica alba
    J Mol Recognit29, 223-231. PubMed  Europe PubMed DOI
  34. Armstrong,J.S., Camelo,L.A., Zhu-Salzman,K. and Mitchell,F.L.
    Effects of cysteine proteinase inhibitors scN and E-64 on southern corn rootworm1 larval development
    Southwest Entomol41, 337-346. DOI
  35. Bhat,S.A., Bhat,W.F. and Bano,B.
    Spectroscopic evaluation of the interaction between pesticides and chickpea cystatin: comparative binding and toxicity analyses
    Environ Sci Process Impacts18, 872-881. PubMed  Europe PubMed DOI
  36. Christoff,A.P., Passaia,G., Salvati,C., Alves-Ferreira,M., Margis-Pinheiro,M. and Margis,R.
    Rice bifunctional phytocystatin is a dual modulator of legumain and papain-like proteases
    Plant Mol Biol92, 193-207. PubMed  Europe PubMed DOI
  37. Cingel,A., Savic,J., Lazarevic,J., Cosic,T., Raspor,M., Smigocki,A. and Ninkovic,S.
    Co-expression of the proteinase inhibitors oryzacystatin I and oryzacystatin II in transgenic potato alters Colorado potato beetle larval development
    Insect Sci24, 768-780. PubMed  Europe PubMed DOI
  38. Khan,S., Ahmad,S., Siddiqi,M.I. and Bano,B.
    Physico-chemical and in-silico analysis of a phytocystatin purified from Brassica juncea cultivar RoAgro 5444
    Biochem Cell Biol94, 584-596. PubMed  Europe PubMed DOI
  39. Papolu,P.K., Dutta,T.K., Tyagi,N., Urwin,P.E., Lilley,C.J. and Rao,U.
    Expression of a cystatin transgene in eggplant provides resistance to root-knot nematode, Meloidogyne incognita
    Front Plant Sci7, 1122-1122. PubMed  Europe PubMed DOI
  40. Rasoolizadeh,A., Goulet,M.C., Sainsbury,F., Cloutier,C. and Michaud,D.
    Single substitutions to closely related amino acids contribute to the functional diversification of an insect-inducible, positively selected plant cystatin
    FEBS J283, 1323-1335. PubMed  Europe PubMed DOI
  41. Szewinska,J., Siminska,J. and Bielawski,W.
    The roles of cysteine proteases and phytocystatins in development and germination of cereal seeds
    J Plant Physiol207, 10-21. PubMed  Europe PubMed DOI
  42. Udenigwe,C.C.
    Towards rice bran protein utilization: in silico insight on the role of oryzacystatins in biologically-active peptide production
    Food Chem191, 135-138. PubMed  Europe PubMed DOI
  43. vanWyk,S.G., Kunert,K.J., Cullis,C.A., Pillay,P., Makgopa,M.E., Schluter,U. and Vorster,B.J.
    Review: The future of cystatin engineering
    Plant Sci246, 119-127. PubMed  Europe PubMed DOI
  44. Yuan,S., Li,R., Wang,L., Chen,H., Zhang,C., Chen,L., Hao,Q., Shan,Z., Zhang,X., Chen,S., Yang,Z., Qiu,D. and Zhou,X.
    Search for nodulation and nodule development-related cystatin genes in the genome of soybean (Glycine max)
    Front Plant Sci7, 1595-1595. PubMed  Europe PubMed DOI
  45. 2015
  46. Abd El-latif,A.O.
    Isolation and purification of a papain inhibitor from Egyptian genotypes of barley seeds and its in vitro and in vivo effects on the cowpea bruchid, Callosobruchus maculatus (F.)
    Pestic Biochem Physiol118, 26-32. PubMed  Europe PubMed DOI
  47. Cardoso,T.H., Freitas,A.C., Andrade,B.S., Sousa,A.O., Santiago Ada,S., Koop,D.M., Gramacho,K.P., Alvim,F.C., Micheli,F. and Pirovani,C.P.
    TcCYPR04, a cacao papain-like cysteine-protease detected in senescent and necrotic tissues interacts with a cystatin TcCYS4
    PLoS ONE10, e0144440-e0144440. PubMed  Europe PubMed DOI
  48. Chan,Y.L., He,Y., Hsiao,T.T., Wang,C.J., Tian,Z. and Yeh,K.W.
    Pyramiding taro cystatin and fungal chitinase genes driven by a synthetic promoter enhances resistance in tomato to root-knot nematode Meloidogyne incognita
    Plant Sci231, 74-81. PubMed  Europe PubMed DOI
  49. Chauhan,R., Jasrai,Y. and Pandya,H.
    In silico analysis for five major cereal crops phytocystatins
    Interdiscip Sci7, 233-241. PubMed  Europe PubMed DOI
  50. Chojnacka,M., Szewinska,J., Mielecki,M., Nykiel,M., Imai,R., Bielawski,W. and Orzechowski,S.
    A triticale water-deficit-inducible phytocystatin inhibits endogenous cysteine proteinases in vitro
    J Plant Physiol174, 161-165. PubMed  Europe PubMed DOI
  51. Freitas,A.C., Souza,C.F., Monzani,P.S., Garcia,W., de Almeida,A.A., Costa,M.G. and Pirovani,C.P.
    The activity of TcCYS4 modified by variations in pH and temperature can affect symptoms of Witches' Broom Disease of cocoa, caused by the fungus Moniliophthora perniciosa
    PLoS ONE10, e0121519-e0121519. PubMed  Europe PubMed DOI
  52. Hu,Y.J., Irene,D., Lo,C.J., Cai,Y.L., Tzen,T.C., Lin,T.H. and Chyan,C.L.
    Resonance assignments and secondary structure of a phytocystatin from Sesamum indicum
    Biomol NMR Assign9, 309-311. PubMed  Europe PubMed DOI
  53. Kunert,K.J., van Wyk,S.G., Cullis,C.A., Vorster,B.J. and Foyer,C.H.
    Potential use of phytocystatins in crop improvement, with a particular focus on legumes
    J Exp Bot66, 3559-3570. PubMed  Europe PubMed DOI
  54. Li,R., Wang,W., Wang,W., Li,F., Wang,Q., Xu,Y. and Wang,S.
    Overexpression of a cysteine proteinase inhibitor gene from Jatropha curcas confers enhanced tolerance to salinity stress
    Electron J Biotechnol18, 368-375. DOI
  55. Liang,J., Wang,Y., Ding,G., Li,W., Yang,G. and He,N.
    Biotic stress-induced expression of mulberry cystatins and identification of cystatin exhibiting stability to silkworm gut proteinases
    Planta242, 1139-1151. PubMed  Europe PubMed DOI
  56. Lima,A.M., Dos Reis,S.P. and de Souza,C.R.
    Phytocystatins and their potential to control plant diseases caused by fungi
    Protein Pept Lett22, 104-111. PubMed  Europe PubMed  V
  57. Munger,A., Simon,M.A., Khalf,M., Goulet,M.C. and Michaud,D.
    Cereal cystatins delay sprouting and nutrient loss in tubers of potato, Solanum tuberosum
    BMC Plant Biol15, 296-296. PubMed  Europe PubMed DOI
  58. Quain,M.D., Makgopa,M.E., Cooper,J.W., Kunert,K.J. and Foyer,C.H.
    Ectopic phytocystatin expression increases nodule numbers and influences the responses of soybean (Glycine max) to nitrogen deficiency
    Phytochemistry112, 179-187. PubMed  Europe PubMed DOI
  59. Siminska,J. and Bielawski,W.
    Identification and expression analysis of a novel phytocystatin in developing and germinating seeds of triticale (xTriticosecale Wittm.)
    Acta Soc Bot Pol84, 139-142. DOI
  60. Tan,Y., Li,M. and Ma,F.
    Overexpression of MpCYS2, a phytocystatin gene from Malus prunifolia (Willd.) Borkh., confers drought tolerance and protects against oxidative stress in Arabidopsis
    Plant Cell Tissue Organ Cult123, 15-27. DOI
  61. Tan,Y., Wei,X., Wang,P., Sun,X., Li,M. and Ma,F.
    A phytocystatin gene from Malus prunifolia (Willd.) Borkh., MpCYS5, confers salt stress tolerance and functions in endoplasmic reticulum stress response in Arabidopsis
    Plant Mol Biol Report34, 62-75. DOI
  62. Valdes-Rodriguez,S., Galvan-Ramirez,J.P., Guerrero-Rangel,A. and Cedro-Tanda,A.
    Multifunctional amaranth cystatin inhibits endogenous and digestive insect cysteine endopeptidases: a potential tool to prevent proteolysis and for the control of insect pests
    Biotechnol Appl Biochem62, 634-641. PubMed  Europe PubMed DOI
  63. Vieira,P., Wantoch,S., Lilley,C.J., Chitwood,D.J., Atkinson,H.J. and Kamo,K.
    Expression of a cystatin transgene can confer resistance to root lesion nematodes in Lilium longiflorum cv. 'Nellie White'
    Transgenic Res24, 421-432. PubMed  Europe PubMed DOI
  64. 2014
  65. Bhat,S.A., Sohail,A., Siddiqui,A.A. and Bano,B.
    Effect of non-enzymatic glycation on cystatin: a spectroscopic study
    J Fluoresc24, 1107-1117. PubMed  Europe PubMed DOI
  66. Chauhan,R., Jasrai,Y. and Pandya,H.
    In silico analysis for five major cereal crops phytocystatins
    Interdiscip Sci7, 233-241. PubMed  Europe PubMed DOI
  67. Christoff,A.P. and Margis,R.
    The diversity of rice phytocystatins
    Mol Genet Genomics289, 1321-1330. PubMed  Europe PubMed DOI
  68. Jangpromma,N., Saito,A., Araki,T., Jaisil,P., Songsri,P., Daduang,S., Kawaguchi,Y., Dhiravisit,A. and Thammasirirak,S.
    Molecular cloning and characterization in eukaryotic expression systems of a sugarcane cysteine protease inhibitor gene involved in drought tolerance
    Turk J Bot38, 724-736. DOI
  69. Quain,M.D., Makgopa,M.E., Marquez-Garcia,B., Comadira,G., Fernandez-Garcia,N., Olmos,E., Schnaubelt,D., Kunert,K.J. and Foyer,C.H.
    Ectopic phytocystatin expression leads to enhanced drought stress tolerance in soybean (Glycine max) and Arabidopsis thaliana through effects on strigolactone pathways and can also result in improved seed traits
    Plant Biotechnol J12, 903-913. PubMed  Europe PubMed DOI
  70. 2013
  71. Porruan,R. and Anuntalabhochai,S.
    Characterization of Siam tulip (Curcuma alismatifolia) cystatin (CaCPI)
    Chiang Mai Univ J Nat Sci12, 99-110. DOI
  72. 2012
  73. Gholizadeh,A.
    Molecular analysis of maize cystatin expression as fusion product in Escherichia coli
    Physiol Mol Biol Plants18, 237-244. PubMed  Europe PubMed DOI  E
  74. Irene,D., Chen,B.J., Lo,S.H., Liu,T.H., Tzen,J.T. and Chyan,C.L.
    Resonance assignments and secondary structure of a phytocystatin from Ananas comosus
    Biomol NMR Assign6, 99-101. PubMed  Europe PubMed DOI
  75. Pillay,P., Kibido,T., Du Plessis,M., Van der Vyver,C., Beyene,G., Vorster,B.J., Kunert,K.J. and Schluter,U.
    Use of transgenic oryzacystatin-I-expressing plants enhances recombinant protein production
    Appl Biochem Biotechnol168, 1608-1620. PubMed  Europe PubMed DOI
  76. Szewinska,J., Prabucka,B., Krawczyk,M., Mielecki,M. and Bielawski,W.
    The participation of phytocystatin TrcC-4 in the activity regulation of EP8, the main prolamin degrading cysteine endopeptidase in triticale seeds
    Plant Growth Regul69, 131-137. DOI
  77. Wang,Y., Zhan,Y., Wu,C., Gong,S., Zhu,N., Chen,S. and Li,H.
    Cloning of a cystatin gene from sugar beet M14 that can enhance plant salt tolerance
    Plant Sci191-192, 93-99. PubMed  Europe PubMed DOI
  78. 2011
  79. Bangrak,P. and Chotigeat,W.
    Molecular cloning and biochemical characterization of a novel cystatin from Hevea rubber latex
    Plant Physiol Biochem49, 244-250. PubMed  Europe PubMed DOI
  80. Carrillo,L., Martinez,M., Alvarez-Alfageme,F., Castanera,P., Smagghe,G., Diaz,I. and Ortego,F.
    A barley cysteine-proteinase inhibitor reduces the performance of two aphid species in artificial diets and transgenic Arabidopsis plants
    Transgenic Res20, 305-319. PubMed  Europe PubMed DOI
  81. Carrillo,L., Martinez,M., Ramessar,K., Cambra,I., Castanera,P., Ortego,F. and Diaz,I.
    Expression of a barley cystatin gene in maize enhances resistance against phytophagous mites by altering their cysteine-proteases
    Plant Cell Rep30, 101-112. PubMed  Europe PubMed DOI
  82. Chu,M.H., Liu,K.L., Wu,H.Y., Yeh,K.W. and Cheng,Y.S.
    Crystal structure of tarocystatin-papain complex: implications for the inhibition property of group-2 phytocystatins
    Planta234, 243-254. PubMed  Europe PubMed DOI  S
  83. Dou,S., Wei,J., Cao,Y. and Lan,J.
    Molecular characterization and preliminary functional analysis of cystatin OC-I in rice
    J Food Agric Environ9, 235-239.
  84. Gao,S., Yu,B., Zhai,H., He,S. and Liu,Q.
    Enhanced stem nematode resistance of transgenic sweetpotato plants expressing oryzacystatin-I gene
    Agric Sci China10, 519-525. DOI
  85. Gao,S., Yu,B., Yuan,L., Zhai,H., He,S. and Liu,Q.
    Production of transgenic sweetpotato plants resistant to stem nematodes using oryzacystatin-I gene
    Sci Hortic128, 408-414. DOI
  86. Hong,J.K., Je,J., Song,C., Hwang,J.E., Lee,Y.H. and Lim,C.O.
    Biochemical analysis of a Chinese cabbage phytocystatin-1
    Genes Genomics34, 13-18. DOI
  87. Shyu,D.J.H., Young,Y.M., Lu,H.C., Cheng,Y.M., Tzen,J.T.C. and Chou,W.M.
    Cloning, functional expression and characterization of a phytocystatin gene from jelly fig (Ficus awkeotsang Makino) achenes
    Bot Stud52, 407-416.
  88. Volpicella,M., Leoni,C., Costanza,A., De Leo,F., Gallerani,R. and Ceci,L.R.
    Cystatins, serpins and other families of protease inhibitors in plants
    Curr Protein Pept Sci12, 386-398. PubMed  Europe PubMed DOI  V
  89. 2010
  90. Chan,Y.L., Yang,A.H., Chen,J.T., Yeh,K.W. and Chan,M.T.
    Heterologous expression of taro cystatin protects transgenic tomato against Meloidogyne incognita infection by means of interfering sex determination and suppressing gall formation
    Plant Cell Rep29, 231-238. PubMed  Europe PubMed DOI
  91. Esposito,V., Guglielmi,F., Martin,S.R., Pauwels,K., Pastore,A., Piccoli,R. and Temussi,P.A.
    Aggregation mechanisms of cystatins: a comparative study of monellin and oryzacystatin
    Biochemistry49, 2805-2810. PubMed  Europe PubMed DOI  S
  92. Funaki,J., Tamura,T., Nishinoaki,M., Misaka,T., Eto,W. and Asakura,T.
    Utilization of oryzacystatin for regulating the ripening of squid shiokara, a traditional japanese salted and fermented seafood
    J Food Sci75, S527-S530. PubMed  Europe PubMed DOI
  93. Hwang,J.E., Hong,J.K., Lim,C.J., Chen,H., Je,J., Yang,K.A., Kim,D.Y., Choi,Y.J., Lee,S.Y. and Lim,C.O.
    Distinct expression patterns of two Arabidopsis phytocystatin genes, AtCYS1 and AtCYS2, during development and abiotic stresses
    Plant Cell Rep29, 905-915. PubMed  Europe PubMed DOI
  94. Jung,D.Y., Lee,O.R., Kim,Y.J., Lee,J.H., Pulla,R.K., Sathiyaraj,G., Shim,J.S. and Yang,D.C.
    Molecular characterization of a cysteine proteinase inhibitor, PgCPI, from Panax ginseng C. A. Meyer
    Acta Physiol Plant32, 961-970. DOI
  95. Kiggundu,A., Muchwezi,J., Van der Vyver,C., Viljoen,A., Vorster,J., Schluter,U., Kunert,K. and Michaud,D.
    Deleterious effects of plant cystatins against the banana weevil Cosmopolites sordidus
    Arch Insect Biochem Physiol73, 87-105. PubMed  Europe PubMed DOI
  96. Senthilkumar,R., Cheng,C.P. and Yeh,K.W.
    Genetically pyramiding protease-inhibitor genes for dual broad-spectrum resistance against insect and phytopathogens in transgenic tobacco
    Plant Biotechnol J8, 65-75. PubMed  Europe PubMed DOI
  97. Valadares,N.F., Dellamano,M., Soares-Costa,A., Henrique-Silva,F. and Garratt,R.C.
    Molecular determinants of improved cathepsin B inhibition by new cystatins obtained by DNA shuffling
    BMC Struct Biol10, 30-30. PubMed  Europe PubMed DOI  E
  98. Valdes-Rodriguez,S., Cedro-Tanda,A., Aguilar-Hernandez,V., Cortes-Onofre,E., Blanco-Labra,A. and Guerrero-Rangel,A.
    Recombinant amaranth cystatin (AhCPI) inhibits the growth of phytopathogenic fungi
    Plant Physiol Biochem48, 469-475. PubMed  Europe PubMed DOI
  99. 2009
  100. Doi-Kawano,K., Nishimoto,E., Kouzuma,Y., Takahashi,D., Yamashita,S. and Kimura,M.
    Steady-state and time-resolved fluorescence spectroscopic studies on interaction of the N-terminal region with the hairpin loop of the phytocystatin Scb
    J Fluoresc19, 631-639. PubMed  Europe PubMed DOI
  101. Hwang,J.E., Hong,J.K., Je,J.H., Lee,K.O., Kim,D.Y., Lee,S.Y. and Lim,C.O.
    Regulation of seed germination and seedling growth by an Arabidopsis phytocystatin isoform, AtCYS6
    Plant Cell Rep28, 1623-1632. PubMed  Europe PubMed DOI
  102. Martinez,M., Cambra,I., Carrillo,L., Diaz-Mendoza,M. and Diaz,I.
    Characterization of the entire cystatin gene family in barley and their target cathepsin L-like cysteine-proteases, partners in the hordein mobilization during seed germination
    Plant Physiol151, 1531-1545. PubMed  Europe PubMed DOI
  103. Megdiche,W., Passaquet,C., Zourrig,W., Zuily Fodil,Y. and Abdelly,C.
    Molecular cloning and characterization of novel cystatin gene in leaves Cakile maritima halophyte
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