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Summary Expression Gene Literature (11969) GO Terms (0) Nucleotides (8) Proteins (2) Interactants (1441) Wiki
ECB--23018802

Papers associated with LOC100887844 (and LOC752081)



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Proteome analysis reveals the important roles of protease during tenderization of sea cucumber Apostichopus japonicus using iTRAQ., Dong X, He B, Jiang D, Yu C, Zhu B, Qi H., Food Res Int. May 1, 2020; 131 108632.


Seasonal variations of digestive enzymes in sea cucumbers (Holothuria tubulosa, G. 1788) under culture conditions., Günay D, Emiroğlu D, Suzer C., J Exp Zool A Ecol Integr Physiol. March 1, 2020; 333 (3): 144-150.


Time course analysis of immunity-related gene expression in the sea cucumber Apostichopus japonicus during exposure to thermal and hypoxic stress., Huo D, Sun L, Zhang L, Yang H, Liu S, Sun J, Su F., Fish Shellfish Immunol. December 1, 2019; 95 383-390.


Preparation of Antioxidant Peptide by Microwave- Assisted Hydrolysis of Collagen and Its Protective Effect Against H2O2-Induced Damage of RAW264.7 Cells., Li Y, Li J, Lin SJ, Yang ZS, Jin HX., Mar Drugs. November 14, 2019; 17 (11):               


A novel, kinetically stable copper, zinc superoxide dismutase from Psychropotes longicauda., Li Y, Zhang H., Int J Biol Macromol. November 1, 2019; 140 998-1005.


Black sea cucumber (Holothuria atra Jaeger, 1833) rescues Pseudomonas aeruginosa-infected Caenorhabditis elegans via reduction of pathogen virulence factors and enhancement of host immunity., Lee WT, Tan BK, Eng SA, Yuen GC, Chan KL, Sim YK, Sulaiman SF, Shu-Chien AC., Food Funct. September 1, 2019; 10 (9): 5759-5767.


Preparation and Evaluation of Peptides with Potential Antioxidant Activity by Microwave Assisted Enzymatic Hydrolysis of Collagen from Sea Cucumber Acaudina Molpadioides Obtained from Zhejiang Province in China., Jin HX, Xu HP, Li Y, Zhang QW, Xie H., Mar Drugs. March 15, 2019; 17 (3):                 


On Biomineralization: Enzymes Switch on Mesocrystal Assembly., Rao A, Roncal-Herrero T, Schmid E, Drechsler M, Scheffner M, Gebauer D, Kröger R, Cölfen H., ACS Cent Sci. February 27, 2019; 5 (2): 357-364.        


Annual assessment of the sea urchin (Paracentrotus lividus) humoral innate immune status: Tales from the north Portuguese coast., Fernández-Boo S, Pedrosa-Oliveira MH, Afonso A, Arenas F, Rocha F, Valente LMP, Costas B., Mar Environ Res. October 1, 2018; 141 128-137.


Compositional analysis of sulfated polysaccharides from sea cucumber (Stichopus japonicus) released by autolysis reaction., Song S, Wu S, Ai C, Xu X, Zhu Z, Cao C, Yang J, Wen C., Int J Biol Macromol. July 15, 2018; 114 420-425.


Molecular cloning and functional characterization of cathepsin D from sea cucumber Apostichopus japonicus., Yu C, Cha Y, Wu F, Xu X, Qin L, Du M., Fish Shellfish Immunol. November 1, 2017; 70 553-559.


Indole reduces the expression of virulence related genes in Vibrio splendidus pathogenic to sea cucumber Apostichopus japonicus., Zhang S, Zhang W, Liu N, Song T, Liu H, Zhao X, Xu W, Li C., Microb Pathog. October 1, 2017; 111 168-173.


Synbiotic dietary supplement affects growth, immune responses and intestinal microbiota of Apostichopus japonicus., Wang X, Sun Y, Wang L, Li X, Qu K, Xu Y., Fish Shellfish Immunol. September 1, 2017; 68 232-242.


The skeletal proteome of the sea star Patiria miniata and evolution of biomineralization in echinoderms., Flores RL, Livingston BT., BMC Evol Biol. June 5, 2017; 17 (1): 125.            


Molecular cloning and functional characterization of cathepsin B from the sea cucumber Apostichopus japonicus., Chen H, Lv M, Lv Z, Li C, Xu W, Zhang W, Zhao X, Duan X, Jin C., Fish Shellfish Immunol. January 1, 2017; 60 447-457.


Characterization of a metalloprotease involved in Vibrio splendidus infection in the sea cucumber, Apostichopus japonicus., Zhang C, Liang W, Zhang W, Li C., Microb Pathog. December 1, 2016; 101 96-103.


Identification and functional characterization of a novel antistasin/WAP-like serine protease inhibitor from the tropical sea cucumber, Stichopus monotuberculatus., Yan A, Ren C, Chen T, Jiang X, Sun H, Hu C., Fish Shellfish Immunol. December 1, 2016; 59 203-212.


Regeneration in bipinnaria larvae of the bat star Patiria miniata induces rapid and broad new gene expression., Oulhen N, Heyland A, Carrier TJ, Zazueta-Novoa V, Fresques T, Laird J, Onorato TM, Janies D, Wessel G., Mech Dev. November 1, 2016; 142 10-21.


Discovery, structural characterization and functional analysis of alpha-2-macroglobulin, a novel immune-related molecule from Holothuria atra., Qian J, Ren C, Xia J, Chen T, Yu Z, Hu C., Gene. July 10, 2016; 585 (2): 205-15.


Cathepsin L of the sea cucumber Apostichopus japonicus-molecular characterization and transcriptional response to Vibrio splendidus infection., Yang J, Liu H, Zheng G, Xiang X, Lv Z, Wang T., Fish Shellfish Immunol. February 1, 2016; 49 387-95.


Characterization of proteolysis in muscle tissues of sea cucumber Stichopus japonicus., Zhao CC, Yang Y, Wu HT, Zhu ZM, Tang Y, Yu CP, Sun N, Lv Q, Han JR, Li AT, Yan JN, Cha Y., Food Sci Biotechnol. January 1, 2016; 25 (6): 1529-1535.


Granule Associated Serine Proteases of Hematopoietic Cells - An Analysis of Their Appearance and Diversification during Vertebrate Evolution., Akula S, Thorpe M, Boinapally V, Hellman L., PLoS One. November 3, 2015; 10 (11): e0143091.                      


Improving the quality of Laminaria japonica-based diet for Apostichopus japonicus through degradation of its algin content with Bacillus amyloliquefaciens WB1., Wang X, Wang L, Che J, Li Z, Zhang J, Li X, Hu W, Xu Y., Appl Microbiol Biotechnol. July 1, 2015; 99 (14): 5843-53.


Examination of the skeletal proteome of the brittle star Ophiocoma wendtii reveals overall conservation of proteins but variation in spicule matrix proteins., Seaver RW, Livingston BT., Proteome Sci. February 7, 2015; 13 7.            


A computational model for BMP movement in sea urchin embryos., van Heijster P, Hardway H, Kaper TJ, Bradham CA., J Theor Biol. December 21, 2014; 363 277-89.


Conservation of sequence and function in fertilization of the cortical granule serine protease in echinoderms., Oulhen N, Xu D, Wessel GM., Biochem Biophys Res Commun. August 1, 2014; 450 (3): 1135-41.


Effect of intestinal autochthonous probiotics isolated from the gut of sea cucumber (Apostichopus japonicus) on immune response and growth of A. japonicus., Chi C, Liu JY, Fei SZ, Zhang C, Chang YQ, Liu XL, Wang GX., Fish Shellfish Immunol. June 1, 2014; 38 (2): 367-73.


[Effect of light intensity on the growth and digestive enzyme activity of juvenile sea cucumber Apostichopus japonicas under two kinds of culture methods]., Wei ZZ, Zhao W., Ying Yong Sheng Tai Xue Bao. January 1, 2014; 25 (1): 237-42.


Proteolysis of noncollagenous proteins in sea cucumber, Stichopus japonicus, body wall: characterisation and the effects of cysteine protease inhibitors., Wu HT, Li DM, Zhu BW, Sun JJ, Zheng J, Wang FL, Konno K, Jiang X., Food Chem. November 15, 2013; 141 (2): 1287-94.


Taxonomic assessment and enzymes production by yeasts isolated from marine and terrestrial Antarctic samples., Duarte AW, Dayo-Owoyemi I, Nobre FS, Pagnocca FC, Chaud LC, Pessoa A, Felipe MG, Sette LD., Extremophiles. November 1, 2013; 17 (6): 1023-35.


Proteolytic processing of von Willebrand factor by adamts13 and leukocyte proteases., Lancellotti S, Basso M, De Cristofaro R., Mediterr J Hematol Infect Dis. September 2, 2013; 5 (1): e2013058.        


Isolation and characterization of pepsin-solubilized collagen from the integument of sea cucumber (Stichopus vastus)., Abedin MZ, Karim AA, Ahmed F, Latiff AA, Gan CY, Che Ghazali F, Islam Sarker MZ., J Sci Food Agric. March 30, 2013; 93 (5): 1083-8.


Characterization and Endocytic Internalization of Epith-2 Cell Surface Glycoprotein during the Epithelial-to-Mesenchymal Transition in Sea Urchin Embryos., Wakayama N, Katow T, Katow H., Front Endocrinol (Lausanne). January 1, 2013; 4 112.              


Antioxidant and antihyperlipidemic activities of polysaccharides from sea cucumber Apostichopus japonicus., Liu X, Sun Z, Zhang M, Meng X, Xia X, Yuan W, Xue F, Liu C., Carbohydr Polym. November 6, 2012; 90 (4): 1664-70.


Optimisation of hydrolysis of purple sea urchin (Strongylocentrotus nudus) gonad by response surface methodology and evaluation of in vitro antioxidant activity of the hydrolysate., Zhou D, Qin L, Zhu B, Li D, Yang J, Dong X, Murata Y., J Sci Food Agric. June 1, 2012; 92 (8): 1694-701.


Evolution of thrombin and other hemostatic proteases by survey of protochordate, hemichordate, and echinoderm genomes., Ponczek MB, Bijak MZ, Nowak PZ., J Mol Evol. June 1, 2012; 74 (5-6): 319-31.


Simple model systems: a challenge for Alzheimer''s disease., Di Carlo M., Immun Ageing. April 16, 2012; 9 (1): 3.    


Immunohistochemical analysis of the proteolytic enzyme subtilase in the digestive organs of the sea urchin Strongylocentrotus intermedius., Ura K, Hasegawa S, Tanaka E, Gotoh T, Ojima T, Takagi Y., Anat Rec (Hoboken). January 1, 2012; 295 (1): 73-7.


The protease degrading sperm histones post-fertilization in sea urchin eggs is a nuclear cathepsin L that is further required for embryo development., Morin V, Sanchez-Rubio A, Aze A, Iribarren C, Fayet C, Desdevises Y, Garcia-Huidobro J, Imschenetzky M, Puchi M, Genevière AM., PLoS One. January 1, 2012; 7 (11): e46850.              


Structure and proteolytic properties of ADAMTS13, a metalloprotease involved in the pathogenesis of thrombotic microangiopathies., Lancellotti S, De Cristofaro R., Prog Mol Biol Transl Sci. January 1, 2011; 99 105-44.


A new nuclear protease with cathepsin L properties is present in HeLa and Caco-2 cells., Puchi M, García-Huidobro J, Cordova C, Aguilar R, Dufey E, Imschenetzky M, Bustos P, Morin V., J Cell Biochem. December 1, 2010; 111 (5): 1099-106.


Use of specific glycosidases to probe cellular interactions in the sea urchin embryo., Idoni B, Ghazarian H, Metzenberg S, Hutchins-Carroll V, Oppenheimer SB, Carroll EJ., Exp Cell Res. August 1, 2010; 316 (13): 2204-11.


Intramolecular modulation of serine protease inhibitor activity in a marine cyanobacterium with antifeedant properties., Matthew S, Ratnayake R, Becerro MA, Ritson-Williams R, Paul VJ, Luesch H., Mar Drugs. June 4, 2010; 8 (6): 1803-16.          


Two recombinant peptides, SpStrongylocins 1 and 2, from Strongylocentrotus purpuratus, show antimicrobial activity against Gram-positive and Gram-negative bacteria., Li C, Blencke HM, Smith LC, Karp MT, Stensvåg K., Dev Comp Immunol. March 1, 2010; 34 (3): 286-92.


Purification and characterization of pepsin-solubilized collagen from skin and connective tissue of giant red sea cucumber (Parastichopus californicus)., Liu Z, Oliveira AC, Su YC., J Agric Food Chem. January 27, 2010; 58 (2): 1270-4.


Novel venom gene discovery in the platypus., Whittington CM, Papenfuss AT, Locke DP, Mardis ER, Wilson RK, Abubucker S, Mitreva M, Wong ES, Hsu AL, Kuchel PW, Belov K, Warren WC., Genome Biol. January 1, 2010; 11 (9): R95.          


Patterning of the dorsal-ventral axis in echinoderms: insights into the evolution of the BMP-chordin signaling network., Lapraz F, Besnardeau L, Lepage T., PLoS Biol. November 1, 2009; 7 (11): e1000248.                        


In-depth, high-accuracy proteomics of sea urchin tooth organic matrix., Mann K, Poustka AJ, Mann M., Proteome Sci. December 9, 2008; 6 33.      


Molecular determinants of Xolloid action in vivo., Geach TJ, Dale L., J Biol Chem. October 3, 2008; 283 (40): 27057-63.


Cathepsin L inhibitor I blocks mitotic chromosomes decondensation during cleavage cell cycles of sea urchin embryos., Morin V, Sanchez A, Quiñones K, Huidobro JG, Iribarren C, Bustos P, Puchi M, Genevière AM, Imschenetzky M., J Cell Physiol. September 1, 2008; 216 (3): 790-5.

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