bioRxiv
GIT2 is dispensable for normal learning and memory function due to a predominant brain GIT2 splice variant that evades GIT/PIX complexes
Preprints
Toth, K; Martyn, A; Bastrikova, N; Kim, W; Rodriguiz, R; Ahmed, U; Schmalzigaug, R; Dudek, S; Wetsel, W; Premont, R
2019
Duke Scholars
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Toth, K., Martyn, A., Bastrikova, N., Kim, W., Rodriguiz, R., Ahmed, U., … Premont, R. (2019). GIT2 is dispensable for normal learning and memory function due to a predominant brain GIT2 splice variant that evades GIT/PIX complexes. bioRxiv. https://doi.org/10.1101/538223
Toth, Krisztian, Amanda Martyn, Natalia Bastrikova, Woojoo Kim, Ramona Rodriguiz, Umer Ahmed, Robert Schmalzigaug, Serena Dudek, William Wetsel, and Richard Premont. “GIT2 is dispensable for normal learning and memory function due to a predominant brain GIT2 splice variant that evades GIT/PIX complexes.” BioRxiv, 2019. https://doi.org/10.1101/538223.
Toth K, Martyn A, Bastrikova N, Kim W, Rodriguiz R, Ahmed U, et al. GIT2 is dispensable for normal learning and memory function due to a predominant brain GIT2 splice variant that evades GIT/PIX complexes. bioRxiv. 2019.
Toth, Krisztian, et al. “GIT2 is dispensable for normal learning and memory function due to a predominant brain GIT2 splice variant that evades GIT/PIX complexes.” BioRxiv, 2019. Epmc, doi:10.1101/538223.
Toth K, Martyn A, Bastrikova N, Kim W, Rodriguiz R, Ahmed U, Schmalzigaug R, Dudek S, Wetsel W, Premont R. GIT2 is dispensable for normal learning and memory function due to a predominant brain GIT2 splice variant that evades GIT/PIX complexes. bioRxiv. 2019.