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Summary Expression Phenotypes Gene Literature (19) GO Terms (9) Nucleotides (662) Proteins (43) Interactants (380) Wiki
XB-GENEPAGE-6258236

Papers associated with marcks



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Microtubule Minus-End Binding Protein CAMSAP2 and Kinesin-14 Motor KIFC3 Control Dendritic Microtubule Organization., Cao Y, Lipka J, Stucchi R, Burute M, Pan X, Portegies S, Tas R, Willems J, Will L, MacGillavry H, Altelaar M, Kapitein LC, Harterink M, Hoogenraad CC., Curr Biol. March 9, 2020; 30 (5): 899-908.e6.          


The Lhx1-Ldb1 complex interacts with Furry to regulate microRNA expression during pronephric kidney development., Espiritu EB, Crunk AE, Bais A, Hochbaum D, Cervino AS, Phua YL, Butterworth MB, Goto T, Ho J, Hukriede NA, Cirio MC., Sci Rep. October 30, 2018; 8 (1): 16029.                                      


Phosphorylation Dynamics Dominate the Regulated Proteome during Early Xenopus Development., Peuchen EH, Cox OF, Sun L, Hebert AS, Coon JJ, Champion MM, Dovichi NJ, Huber PW., Sci Rep. November 15, 2017; 7 (1): 15647.                          


ENaC activity is regulated by calpain-2 proteolysis of MARCKS proteins., Montgomery DS, Yu L, Ghazi ZM, Thai TL, Al-Khalili O, Ma HP, Eaton DC, Alli AA., Am J Physiol Cell Physiol. July 1, 2017; 313 (1): C42-C53.


MARCKS-like protein is an initiating molecule in axolotl appendage regeneration., Sugiura T, Wang H, Barsacchi R, Simon A, Tanaka EM., Nature. March 10, 2016; 531 (7593): 237-40.                          


Calmodulin and CaMKII modulate ENaC activity by regulating the association of MARCKS and the cytoskeleton with the apical membrane., Alli AA, Bao HF, Liu BC, Yu L, Aldrugh S, Montgomery DS, Ma HP, Eaton DC., Am J Physiol Renal Physiol. September 1, 2015; 309 (5): F456-63.


Phosphatidylinositol phosphate-dependent regulation of Xenopus ENaC by MARCKS protein., Alli AA, Bao HF, Alli AA, Aldrugh Y, Song JZ, Ma HP, Yu L, Al-Khalili O, Eaton DC., Am J Physiol Renal Physiol. September 15, 2012; 303 (6): F800-11.


Two myristoylated alanine-rich C-kinase substrate (MARCKS) paralogs are required for normal development in zebrafish., Ott LE, McDowell ZT, Turner PM, Law JM, Adler KB, Yoder JA, Jones SL., Anat Rec (Hoboken). September 1, 2011; 294 (9): 1511-24.


Inhibition of native and recombinant nicotinic acetylcholine receptors by the myristoylated alanine-rich C kinase substrate peptide., Gay EA, Klein RC, Melton MA, Blackshear PJ, Yakel JL., J Pharmacol Exp Ther. December 1, 2008; 327 (3): 884-90.


Essential role of MARCKS in cortical actin dynamics during gastrulation movements., Iioka H, Ueno N, Kinoshita N., J Cell Biol. January 19, 2004; 164 (2): 169-74.        


Dynorphin B is an agonist of nuclear opioid receptors coupling nuclear protein kinase C activation to the transcription of cardiogenic genes in GTR1 embryonic stem cells., Ventura C, Zinellu E, Maninchedda E, Maioli M., Circ Res. April 4, 2003; 92 (6): 623-9.


[xMLP is an early response calcium target gene in neural determination in Xenopus laevis]., Batut J, Néant I, Leclerc C, Moreau M., J Soc Biol. January 1, 2003; 197 (3): 283-9.


Isolation and characterization of a Xenopus gene (XMLP) encoding a MARCKS-like protein., Zhao H, Cao Y, Grunz H., Int J Dev Biol. October 1, 2001; 45 (7): 817-26.                        


Gene expression screening in Xenopus identifies molecular pathways, predicts gene function and provides a global view of embryonic patterning., Gawantka V, Pollet N, Delius H, Vingron M, Pfister R, Nitsch R, Blumenstock C, Niehrs C., Mech Dev. October 1, 1998; 77 (2): 95-141.                                                            


Vasopressin-induced activation of protein kinase C in renal epithelial cells., Ali N, Kantachuvesiri S, Smallwood JI, Macala LJ, Isales C, Ji J, Reilly R, Hayslett JP., Biochim Biophys Acta. March 27, 1998; 1402 (2): 188-96.


Mechanisms of MARCKS gene activation during Xenopus development., Shi Y, Shi Y, Sullivan SK, Pitterle DM, Kennington EA, Graff JM, Blackshear PJ., J Biol Chem. November 14, 1997; 272 (46): 29290-300.


Identification and characterization of MARCKS in Xenopus laevis., Ali N, Macala LJ, Hayslett JP., Biochem Biophys Res Commun. May 8, 1997; 234 (1): 143-6.


Calcium binding and conformational properties of calmodulin complexed with peptides derived from myristoylated alanine-rich C kinase substrate (MARCKS) and MARCKS-related protein (MRP)., Porumb T, Crivici A, Blackshear PJ, Ikura M., Eur Biophys J. January 1, 1997; 25 (4): 239-47.

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