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Ann O. Sperry, Ph.D. | Selected Publications

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Ann O. Sperry, Ph.D.

Ann O. Sperry, Ph.D.
Associate Professor

B.S., Texas A&M University
Ph.D., Rice University
Research Fellow, University of Texas Southwestern Medical Center

office: Brody 7N-59A
telephone: 252-744-2841
e-mail: sperrya@ecu.edu
website: The Sperry Lab

 
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Selected Publications
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Selected Publications
Sperry, A.O. and S.M. Berget. 1986. In vitro cleavage of the simian virus 40 early polyadenylation site adjacent to a required downstream TG sequence. Mol. Cell Biol. 6: 4734-4741.

Sperry, A.O., V.C. Blasquez, and W.T. Garrard. 1989. Dysfunction of chromosomal loop attachment sites: illegitimate recombination linked to matrix association regions and topoisomerase II. P.N.A.S. USA. 86: 5497-5501.

Fishel, B.R., A.O. Sperry, and W.T. Garrard. 1993. Yeast calmodulin and a conserved nuclear protein participate in the in vivo binding of a matrix association region. P.N.A.S. USA 90: 5623-5627.

Sperry, A.O., and L.-P.Zhao. 1996. Kinesin-related proteins in the mammalian testes: candidate motors for meiosis and morphogenesis. Mol. Biol. Cell 7: 289-305.

Patrick, M.N. and A.O. Sperry. 2000. Identification of isoforms of a mitotic motor in mammalian spermatogenesis. Biol. Reprod. 62: 1360-1369.

Navolanic, P.M. and A.O. Sperry. 2000. Identification of isoforms of a mitotic motor in mammalian spermatogenesis.  Biol. Reprod. 62: 1360-1369.

Zou, Y., C.F. Millette, and A.O. Sperry. 2002. KRP3A and KRP3B: candidate motors for spermatid maturation in the seminiferous epithelium. Biol. Reprod. 66: 843-855.

Yang, W.-X., and A.O. Sperry. 2003. C-Terminal kinesin motor KIFC1 participates in acrosome biogenesis and vesicle transport. Biol. Reprod. 69:1719-1729.

Zhang, Y. and A.O. Sperry. 2004. Comparative analysis of two C-terminal kinesin motor proteins: KIFC1 and KIFC5A. Cell Motil. Cytoskeleton  58:213-230.

Yang, W.-X., H. Jefferson, and A.O. Sperry. 2006. The molecular motor KIFC1 associates with a complex containing nucleoporin NUP62 that is regulated during development and by the small GTPase RAN. Biol. Reprod. 74: 684-690.

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