Biology Reference
In-Depth Information
3. O'Connor TP, Duerr JS, Bentley D. Pioneer growth cone steering decisions mediated by single filopodial
contacts in situ. J Neurosci 1990;
:3935 e 46.
4. Albrecht-Buehler G. Filopodia of spreading 3T3 cells. Do they have a substrate-exploring function? J Cell Biol
1976;
10
:275 e 86.
5. Hammarback JA, Palm SL, Furcht LT, Letourneau PC. Guidance of neurite outgrowth by pathways of
substratum-adsorbed laminin. J Neurosci Res 1995;
69
:213 e 20.
6. Wessells NK, Nuttall RP. Normal branching, induced branching, and steering of cultured parasympathetic
motor neurons. Exp Cell Res 1978;
13
:111 e 22.
7. Hammarback JA, Letourneau PC. Neurite extension across regions of low cell-substratum adhesivity: impli-
cations for the guidepost hypothesis of axonal pathfinding. Dev Biol 1986;
115
:655 e 62.
117
8.
Suter DM, Errante LD, Belotserkovsky V, Forscher P. The Ig superfamily cell adhesion molecule, apCAM,
mediates growth cone steering by substrate-cytoskeletal coupling. J Cell Biol 1998;
:227 e 40.
9. Lo CM, Wang HB, Dembo M, Wang YL. Cell movement is guided by the rigidity of the substrate. Biophys
J 2000;
141
:144 e 52.
10. Pelham Jr RJ, Wang Y. Cell locomotion and focal adhesions are regulated by substrate flexibility. Proc Natl Acad
Sci USA 1997;
79
:13661 e 5.
11. Lo CM, Wang HB, Dembo M, Wang YL. Cell movement is guided by the rigidity of the substrate. Biophys
J 2000;
94
:144 e 52.
12. Harland B, Walcott S, Sun SX. Adhesion dynamics and durotaxis in migrating cells. Phys Biol 2011;
8
79
:015011.
13.
Isenberg BC, Dimilla PA, Walker M, Kim S, Wong JY. Vascular smooth muscle cell durotaxis depends on
substrate stiffness gradient strength. Biophys J 2009;
97
:1313 e 22.
14.
Jiang G, Huang AH, Cai Y, Tanase M, Sheetz MP. Rigidity sensing at the leading edge through alphavbeta3
integrins and RPTPalpha. Biophys J 2006;
:1804 e 9.
15. Tse JR, Engler AJ. Stiffness gradients mimicking in vivo tissue variation regulate mesenchymal stem cell fate.
PLoS One 2011;
90
:e15978.
16. Hanks SK, Calalb MB, Harper MC, Patel SK. Focal adhesion protein-tyrosine kinase phosphorylated in
response to cell attachment to fibronectin. Proc Natl Acad Sci USA 1992;
6
:8487 e 91.
17. Wang HB, Dembo M, Hanks SK, Wang Y. Focal adhesion kinase is involved in mechanosensing during
fibroblast migration. Proc Natl Acad Sci USA 2001;
89
:11295 e 300.
18. Ren XD, Kiosses WB, Sieg DJ, Otey CA, Schlaepfer DD, Schwartz MA. Focal adhesion kinase suppresses Rho
activity to promote focal adhesion turnover. J Cell Sci 2000;
98
:3673 e 8.
19. Chikumi H, Barac A, Behbahani B, Gao Y, Teramoto H, Zheng Y, et al. Homo- and hetero-oligomerization of
PDZ-RhoGEF, LARG and p115RhoGEF by their C-terminal region regulates their in vivo Rho GEF activity and
transforming potential. Oncogene 2004;
113
:233 e 40.
20. Saffell JL, Williams EJ, Doherty P, Walsh FW. Axonal growth mediated by cell adhesion molecules requires
activation of fibroblast growth factor receptors. Biochem Soc Trans 1995;
23
:469 e 70.
21. Saffell JL, Williams EJ, Mason IJ, Walsh FS, Doherty P. Expression of a dominant negative FGF recep-
tor inhibits axonal growth and FGF receptor phosphorylation stimulated by CAMs. Neuron 1997;
23
:
18
231 e 42.
22. Doherty P, Walsh FS. Signal transduction events underlying neurite outgrowth stimulated by cell adhesion
molecules. Curr Opin Neurobiol 1994;
:49 e 55.
23. Schaechter JD, Benowitz LI. Activation of protein kinase C by arachidonic acid selectively enhances the
phosphorylation of GAP-43 in nerve terminal membranes. J Neurosci 1993;
4
:4361 e 71.
24. He Q, Dent EW, Meiri KF. Modulation of actin filament behavior by GAP-43 (neuromodulin) is dependent on
the phosphorylation status of serine 41, the protein kinase C site. J Neurosci 1997;
13
:3515 e 24.
25. Meiri KF, Saffell JL, Walsh FS, Doherty P. Neurite outgrowth stimulated by neural cell adhesion molecules
requires growth-associated protein-43 (GAP-43) function and is associated with GAP-43 phosphorylation in
growth cones. J Neurosci 1998;
17
:10429 e 37.
26. Strittmatter SM, Fankhauser C, Huang PL, Mashimo H, Fishman MC. Neuronal pathfinding is abnormal in
mice lacking the neuronal growth cone protein GAP-43. Cell 1995;
18
:445 e 52.
27. Perris R, Perissinotto D. Role of the extracellular matrix during neural crest cell migration. Mech Dev 2000;
80
95
:
3 e 21.
Search WWH ::




Custom Search