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Summary Expression Gene Literature (45) GO Terms (0) Nucleotides (4) Proteins (2) Interactants (86) Wiki
ECB--23046104

Papers associated with LOC115922368 (and LOC100887844)



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Benzimidazolyl-pyrazolo[3,4-b]pyridinones, Selective Inhibitors of MOLT-4 Leukemia Cell Growth and Sea Urchin Embryo Spiculogenesis: Target Quest., Lichitsky BV, Komogortsev AN, Dudinov AA, Krayushkin MM, Khodot EN, Samet AV, Silyanova EA, Konyushkin LD, Karpov AS, Gorses D, Radimerski T, Semenova MN, Kiselyov AS, Semenov VV., ACS Comb Sci. December 9, 2019; 21 (12): 805-816.


The evolution of a new cell type was associated with competition for a signaling ligand., Ettensohn CA, Adomako-Ankomah A., PLoS Biol. September 18, 2019; 17 (9): e3000460.                    


Membrane patterns in eyes with choroidal neovascularization on optical coherence tomography angiography., Karacorlu M, Sayman Muslubas I, Arf S, Hocaoglu M, Ersoz MG., Eye (Lond). August 1, 2019; 33 (8): 1280-1289.


Possible cooption of a VEGF-driven tubulogenesis program for biomineralization in echinoderms., Morgulis M, Gildor T, Roopin M, Sher N, Malik A, Lalzar M, Dines M, Ben-Tabou de-Leon S, Khalaily L, Ben-Tabou de-Leon S., Proc Natl Acad Sci U S A. June 18, 2019; 116 (25): 12353-12362.


VEGF-like protein from Apostichopus japonicus promotes cell proliferation and migration., Lv Z, Guo M, Li C, Shao Y, Zhao X, Zhang W., Dev Comp Immunol. March 1, 2019; 92 230-237.


Vascular remodeling of choroidal neovascularization in older myopic patients treated with ranibizumab., Cohen SY, Tabary S, El Ameen A, Mrejen S, Quentel G, Giocanti-Auregan A., Graefes Arch Clin Exp Ophthalmol. March 1, 2019; 257 (3): 485-493.


Meis transcription factor maintains the neurogenic ectoderm and regulates the anterior-posterior patterning in embryos of a sea urchin, Hemicentrotus pulcherrimus., Yaguchi J, Yamazaki A, Yaguchi S., Dev Biol. December 1, 2018; 444 (1): 1-8.


Effect of Low Molecular Weight Oligopeptides Isolated from Sea Cucumber on Diabetic Wound Healing in db/db Mice., Li D, Li L, Xu T, Wang T, Ren J, Liu X, Li Y., Mar Drugs. January 8, 2018; 16 (1):                   


Thyroid Hormones Accelerate Initiation of Skeletogenesis via MAPK (ERK1/2) in Larval Sea Urchins (Strongylocentrotus purpuratus)., Taylor E, Heyland A., Front Endocrinol (Lausanne). January 1, 2018; 9 439.                          


New inter-correlated genes targeted by diatom-derived polyunsaturated aldehydes in the sea urchin Paracentrotus lividus., Ruocco N, Maria Fedele A, Costantini S, Romano G, Ianora A, Costantini M., Ecotoxicol Environ Saf. August 1, 2017; 142 355-362.


A Conserved Role for VEGF Signaling in Specification of Homologous Mesenchymal Cell Types Positioned at Spatially Distinct Developmental Addresses in Early Development of Sea Urchins., Erkenbrack EM, Petsios E., J Exp Zool B Mol Dev Evol. July 1, 2017; 328 (5): 423-432.


Expression Pattern of HIF-1α and VEGF Supports Circumferential Application of Scatter Laser for Proliferative Sickle Retinopathy., Rodrigues M, Kashiwabuchi F, Deshpande M, Jee K, Goldberg MF, Lutty G, Semenza GL, Montaner S, Sodhi A., Invest Ophthalmol Vis Sci. December 1, 2016; 57 (15): 6739-6746.        


In Vivo Anti-Cancer Mechanism of Low-Molecular-Weight Fucosylated Chondroitin Sulfate (LFCS) from Sea Cucumber Cucumaria frondosa., Liu X, Liu Y, Hao J, Zhao X, Lang Y, Fan F, Cai C, Li G, Zhang L, Yu G., Molecules. May 12, 2016; 21 (5):             


Comparative Developmental Transcriptomics Reveals Rewiring of a Highly Conserved Gene Regulatory Network during a Major Life History Switch in the Sea Urchin Genus Heliocidaris., Israel JW, Martik ML, Byrne M, Raff EC, Raff RA, McClay DR, Wray GA., PLoS Biol. March 1, 2016; 14 (3): e1002391.            


Experimental Approach Reveals the Role of alx1 in the Evolution of the Echinoderm Larval Skeleton., Koga H, Fujitani H, Morino Y, Miyamoto N, Tsuchimoto J, Shibata TF, Nozawa M, Shigenobu S, Ogura A, Tachibana K, Kiyomoto M, Amemiya S, Wada H., PLoS One. January 1, 2016; 11 (2): e0149067.          


Scabraside D Derived from Sea Cucumber Induces Apoptosis and Inhibits Metastasis via iNOS and STAT-3 Expression in Human Cholangiocarcinoma Xenografts., Assawasuparerk K, Rawangchue T, Phonarknguen R., Asian Pac J Cancer Prev. January 1, 2016; 17 (4): 2151-7.


Transcriptional analysis of VEGF-D and TGFβ genes in MCF7 cells exposed to saponin isolated from Holothuria leucospilota (sea cucumber)., Soltani M, Parivar K, Baharara J, Kerachian MA, Asili J., Rep Biochem Mol Biol. October 1, 2015; 4 (1): 25-31.


Comparative Study of Regulatory Circuits in Two Sea Urchin Species Reveals Tight Control of Timing and High Conservation of Expression Dynamics., Gildor T, Ben-Tabou de-Leon S., PLoS Genet. July 31, 2015; 11 (7): e1005435.          


Improved innate immune responses by Frondanol A5, a sea cucumber extract, prevent intestinal tumorigenesis., Janakiram NB, Mohammed A, Bryant T, Lightfoot S, Collin PD, Steele VE, Rao CV., Cancer Prev Res (Phila). April 1, 2015; 8 (4): 327-37.


Signal-dependent regulation of the sea urchin skeletogenic gene regulatory network., Sun Z, Ettensohn CA., Gene Expr Patterns. November 1, 2014; 16 (2): 93-103.


Growth factors and early mesoderm morphogenesis: insights from the sea urchin embryo., Adomako-Ankomah A, Ettensohn CA., Genesis. March 1, 2014; 52 (3): 158-72.


Expression pattern of vascular endothelial growth factor 2 during sea urchin development., Kipryushina YO, Yakovlev KV, Kulakova MA, Odintsova NA., Gene Expr Patterns. December 1, 2013; 13 (8): 402-6.


Growth factor-mediated mesodermal cell guidance and skeletogenesis during sea urchin gastrulation., Adomako-Ankomah A, Ettensohn CA., Development. October 1, 2013; 140 (20): 4214-25.


Heterochronic activation of VEGF signaling and the evolution of the skeleton in echinoderm pluteus larvae., Morino Y, Koga H, Tachibana K, Shoguchi E, Kiyomoto M, Wada H., Evol Dev. January 1, 2012; 14 (5): 428-36.


Specific expression of a TRIM-containing factor in ectoderm cells affects the skeletal morphogenetic program of the sea urchin embryo., Cavalieri V, Guarcello R, Spinelli G., Development. October 1, 2011; 138 (19): 4279-90.


Ds-echinoside A, a new triterpene glycoside derived from sea cucumber, exhibits antimetastatic activity via the inhibition of NF-κB-dependent MMP-9 and VEGF expressions., Zhao Q, Liu ZD, Xue Y, Wang JF, Li H, Tang QJ, Wang YM, Dong P, Xue CH., J Zhejiang Univ Sci B. July 1, 2011; 12 (7): 534-44.


HpSulf, a heparan sulfate 6-O-endosulfatase, is involved in the regulation of VEGF signaling during sea urchin development., Fujita K, Takechi E, Sakamoto N, Sumiyoshi N, Izumi S, Miyamoto T, Matsuura S, Tsurugaya T, Akasaka K, Yamamoto T., Mech Dev. April 1, 2010; 127 (3-4): 235-45.


Differential effects of sulfated triterpene glycosides, holothurin A1, and 24-dehydroechinoside A, on antimetastasic activity via regulation of the MMP-9 signal pathway., Zhao Q, Xue Y, Liu ZD, Li H, Wang JF, Li ZJ, Wang YM, Dong P, Xue CH., J Food Sci. January 1, 2010; 75 (9): H280-8.


Philinopside E, a new sulfated saponin from sea cucumber, blocks the interaction between kinase insert domain-containing receptor (KDR) and alphavbeta3 integrin via binding to the extracellular domain of KDR., Tian F, Zhu CH, Zhang XW, Xie X, Xin XL, Yi YH, Lin LP, Geng MY, Ding J., Mol Pharmacol. September 1, 2007; 72 (3): 545-52.


Localized VEGF signaling from ectoderm to mesenchyme cells controls morphogenesis of the sea urchin embryo skeleton., Duloquin L, Lhomond G, Gache C., Development. June 1, 2007; 134 (12): 2293-302.


PE, a new sulfated saponin from sea cucumber, exhibits anti-angiogenic and anti-tumor activities in vitro and in vivo., Tian F, Zhang X, Tong Y, Yi Y, Zhang S, Li L, Sun P, Lin L, Ding J., Cancer Biol Ther. August 1, 2005; 4 (8): 874-82.


Philinopside A, a novel marine-derived compound possessing dual anti-angiogenic and anti-tumor effects., Tong Y, Zhang X, Tian F, Yi Y, Xu Q, Li L, Tong L, Lin L, Ding J., Int J Cancer. May 10, 2005; 114 (6): 843-53.


Expression of pigment epithelium-derived factor (PEDF) and vascular endothelial growth factor (VEGF) in sickle cell retina and choroid., Kim SY, Mocanu C, Mcleod DS, Bhutto IA, Merges C, Eid M, Tong P, Lutty GA., Exp Eye Res. October 1, 2003; 77 (4): 433-45.


Angiogenic factors in human proliferative sickle cell retinopathy., Cao J, Mathews MK, McLeod DS, Merges C, Hjelmeland LM, Lutty GA., Br J Ophthalmol. July 1, 1999; 83 (7): 838-46.

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