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Summary Expression Gene Literature (4065) GO Terms (0) Nucleotides (3) Proteins (1) Interactants (1092) Wiki
ECB--23180630

Papers associated with LOC115919910 (and LOC115923832)



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Base excision DNA repair in the embryonic development of the sea urchin, Strongylocentrotus intermedius., Torgasheva NA, Menzorova NI, Sibirtsev YT, Rasskazov VA, Zharkov DO, Nevinsky GA., Mol Biosyst. June 21, 2016; 12 (7): 2247-56.


Nucleosome disruption by DNA ligase III-XRCC1 promotes efficient base excision repair., Odell ID, Barbour JE, Murphy DL, Della-Maria JA, Sweasy JB, Tomkinson AE, Wallace SS, Pederson DS., Mol Cell Biol. November 1, 2011; 31 (22): 4623-32.


The inhibitory action of kohamaic acid A derivatives on mammalian DNA polymerase beta., Mizushina Y, Manita D, Takeuchi T, Sugawara F, Kumamoto-Yonezawa Y, Matsui Y, Takemura M, Sasaki M, Yoshida H, Takikawa H., Molecules. December 29, 2008; 14 (1): 102-21.        


The effects of aphidicolin on morphogenesis and differentiation in the sea urchin embryo., Stephens L, Hardin J, Keller R, Wilt F., Dev Biol. November 1, 1986; 118 (1): 64-9.


The fate of DNA originally existing in the zygote nucleus during achromosomal cleavage of fertilized echinoderm eggs in the presence of aphidicolin: microscopic studies with anti-DNA antibody., Yamada H, Hirai S, Ikegami S, Kawarada Y, Okuhara E, Nagano H., J Cell Physiol. July 1, 1985; 124 (1): 9-12.


Persistent cytoplasmic location of a DNA polymerase beta in sea urchins during development., Hobart PM, Infante AA., Biochim Biophys Acta. April 30, 1980; 607 (2): 256-68.


DNA polymerase activity in preimplantation mouse embryos., Kiessling AA, Weitlauf HM., J Exp Zool. June 1, 1979; 208 (3): 347-54.


A low molecular weight DNA polymerase beta in the sea urchin Strongylocentrotus purpurantus. Partial purification, properties, and changes in development., Hobart PM, Infante AA., J Biol Chem. November 25, 1978; 253 (22): 8229-38.


Aphidicolin prevents mitotic cell division by interfering with the activity of DNA polymerase-alpha., Ikegami S, Taguchi T, Ohashi M, Oguro M, Nagano H, Mano Y., Nature. October 5, 1978; 275 (5679): 458-60.


In situ detection and characterization of DNA polymerase activities in the nucleus of eukaryotic cells., Chevaillier P, Philippe M., Chromosoma. October 17, 1977; 63 (4): 385-99.


Nucleic acid polymerizing enzymes in developing Strongylocentrotus franciscanus embryos., Morris PW, Rutter WJ., Biochemistry. July 13, 1976; 15 (14): 3106-13.


[Morphological and biochemical characterization of the developmental stages of fertilized eggs inSphaerechinus granularis Lam : II. DNA content, DNA polymerase activity and DNase activity]., Müller WE, Breter H-, Zahn G, Zahn RK., Wilhelm Roux Arch Entwickl Mech Org. June 1, 1974; 174 (2): 117-132.


Sea urchin nuclear DNA polymerase. IV. Reversible association of DNA polymerase with nuclei during the cell cycle., Fansler B, Loeb LA., Exp Cell Res. December 1, 1972; 75 (2): 433-41.


Variations in the phosphate content and thiołdisulphide ratio of histones during the cell cycle. Studies with regenerating rat liver and sea urchins., Ord MG, Stocken LA., Biochem J. April 1, 1968; 107 (3): 403-10.

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