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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.