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Items: 12

2.
3.

KIF1B, a novel microtubule plus end-directed monomeric motor protein for transport of mitochondria.

Nangaku M, Sato-Yoshitake R, Okada Y, Noda Y, Takemura R, Yamazaki H, Hirokawa N.

Cell. 1994 Dec 30;79(7):1209-20.

PMID:
7528108
4.

Altered microtubule organization in small-calibre axons of mice lacking tau protein.

Harada A, Oguchi K, Okabe S, Kuno J, Terada S, Ohshima T, Sato-Yoshitake R, Takei Y, Noda T, Hirokawa N.

Nature. 1994 Jun 9;369(6480):488-91.

PMID:
8202139
5.

KIF3A is a new microtubule-based anterograde motor in the nerve axon.

Kondo S, Sato-Yoshitake R, Noda Y, Aizawa H, Nakata T, Matsuura Y, Hirokawa N.

J Cell Biol. 1994 Jun;125(5):1095-107.

6.
7.

Thermal drift is enough to drive a single microtubule along its axis even in the absence of motor proteins.

Nakata T, Sato-Yoshitake R, Okada Y, Noda Y, Hirokawa N.

Biophys J. 1993 Dec;65(6):2504-10.

8.

The phosphorylation of kinesin regulates its binding to synaptic vesicles.

Sato-Yoshitake R, Yorifuji H, Inagaki M, Hirokawa N.

J Biol Chem. 1992 Nov 25;267(33):23930-6.

9.

Interaction of dynamin with microtubules: its structure and GTPase activity investigated by using highly purified dynamin.

Maeda K, Nakata T, Noda Y, Sato-Yoshitake R, Hirokawa N.

Mol Biol Cell. 1992 Oct;3(10):1181-94.

10.

Kinesin associates with anterogradely transported membranous organelles in vivo.

Hirokawa N, Sato-Yoshitake R, Kobayashi N, Pfister KK, Bloom GS, Brady ST.

J Cell Biol. 1991 Jul;114(2):295-302.

11.

Brain dynein (MAP1C) localizes on both anterogradely and retrogradely transported membranous organelles in vivo.

Hirokawa N, Sato-Yoshitake R, Yoshida T, Kawashima T.

J Cell Biol. 1990 Sep;111(3):1027-37.

12.

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