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Summary Expression Phenotypes Gene Literature (15) GO Terms (2) Nucleotides (103) Proteins (56) Interactants (337) Wiki
XB-GENEPAGE-486051

Papers associated with lrp2



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NPXY, a sequence often found in cytoplasmic tails, is required for coated pit-mediated internalization of the low density lipoprotein receptor., Chen WJ, Goldstein JL, Brown MS., J Biol Chem. February 25, 1990; 265 (6): 3116-23.


Linker chain L1 of earthworm hemoglobin. Structure of gene and protein: homology with low density lipoprotein receptor., Suzuki T, Riggs AF., J Biol Chem. June 25, 1993; 268 (18): 13548-55.


Three-dimensional structure of a cysteine-rich repeat from the low-density lipoprotein receptor., Daly NL, Scanlon MJ, Djordjevic JT, Kroon PA, Smith R., Proc Natl Acad Sci U S A. July 3, 1995; 92 (14): 6334-8.  


Elucidation of megalin/LRP2-dependent endocytic transport processes in the larval zebrafish pronephros., Anzenberger U, Bit-Avragim N, Rohr S, Rudolph F, Dehmel B, Willnow TE, Abdelilah-Seyfried S., J Cell Sci. May 15, 2006; 119 (Pt 10): 2127-37.


The role of megalin (LRP-2/Gp330) during development., Fisher CE, Howie SE., Dev Biol. August 15, 2006; 296 (2): 279-97.


Functional characterization of a novel missense CLCN5 mutation causing alterations in proximal tubular endocytic machinery in Dent's disease., Tanuma A, Sato H, Takeda T, Hosojima M, Obayashi H, Hama H, Iino N, Hosaka K, Kaseda R, Imai N, Ueno M, Yamazaki M, Sakimura K, Gejyo F, Saito A., Nephron Physiol. January 1, 2007; 107 (4): p87-97.


Atypical protein kinase C couples cell sorting with primitive endoderm maturation in the mouse blastocyst., Saiz N, Grabarek JB, Sabherwal N, Papalopulu N, Plusa B., Development. November 1, 2013; 140 (21): 4311-22.              


The B-subdomain of the Xenopus laevis XFIN KRAB-AB domain is responsible for its weaker transcriptional repressor activity compared to human ZNF10/Kox1., Born N, Thiesen HJ, Lorenz P., PLoS One. February 3, 2014; 9 (2): e87609.              


Direct reprogramming of fibroblasts into renal tubular epithelial cells by defined transcription factors., Kaminski MM, Tosic J, Kresbach C, Engel H, Klockenbusch J, Müller AL, Pichler R, Grahammer F, Kretz O, Huber TB, Walz G, Arnold SJ, Lienkamp SS., Nat Cell Biol. December 1, 2016; 18 (12): 1269-1280.                  


Transcriptomic and macroevolutionary evidence for phenotypic uncoupling between frog life history phases., Wollenberg Valero KC, Garcia-Porta J, Rodríguez A, Arias M, Shah A, Randrianiaina RD, Brown JL, Glaw F, Amat F, Künzel S, Metzler D, Isokpehi RD, Vences M., Nat Commun. May 15, 2017; 8 15213.      


Neural tube closure requires the endocytic receptor Lrp2 and its functional interaction with intracellular scaffolds., Kowalczyk I, Lee C, Lee C, Schuster E, Hoeren J, Trivigno V, Riedel L, Görne J, Wallingford JB, Hammes A, Feistel K., Development. January 26, 2021; 148 (2):                                   


ADAM11 a novel regulator of Wnt and BMP4 signaling in neural crest and cancer., Pandey A, Cousin H, Horr B, Alfandari D, Alfandari D., Front Cell Dev Biol. January 1, 2023; 11 1271178.                      


HNF1B Alters an Evolutionarily Conserved Nephrogenic Program of Target Genes., Grand K, Stoltz M, Rizzo L, Röck R, Kaminski MM, Salinas G, Getwan M, Naert T, Pichler R, Lienkamp SS., J Am Soc Nephrol. March 1, 2023; 34 (3): 412-432.                          


Time-resolved quantitative proteomic analysis of the developing Xenopus otic vesicle reveals putative congenital hearing loss candidates., Baxi AB, Nemes P, Moody SA., iScience. September 15, 2023; 26 (9): 107665.                          


Prdm15 acts upstream of Wnt4 signaling in anterior neural development of Xenopus laevis., Saumweber E, Mzoughi S, Khadra A, Werberger A, Schumann S, Guccione E, Schmeisser MJ, Kühl SJ., Front Cell Dev Biol. January 1, 2024; 12 1316048.                            

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