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Items: 17

1.
2.

ZMYND10 functions in a chaperone relay during axonemal dynein assembly.

Mali GR, Yeyati PL, Mizuno S, Dodd DO, Tennant PA, Keighren MA, Zur Lage P, Shoemark A, Garcia-Munoz A, Shimada A, Takeda H, Edlich F, Takahashi S, von Kreigsheim A, Jarman AP, Mill P.

Elife. 2018 Jun 19;7. pii: e34389. doi: 10.7554/eLife.34389.

3.

Ciliary dynein motor preassembly is regulated by Wdr92 in association with HSP90 co-chaperone, R2TP.

Zur Lage P, Stefanopoulou P, Styczynska-Soczka K, Quinn N, Mali G, von Kriegsheim A, Mill P, Jarman AP.

J Cell Biol. 2018 Jul 2;217(7):2583-2598. doi: 10.1083/jcb.201709026. Epub 2018 May 9.

4.

HEATR2 plays a conserved role in assembly of the ciliary motile apparatus.

Diggle CP, Moore DJ, Mali G, zur Lage P, Ait-Lounis A, Schmidts M, Shoemark A, Garcia Munoz A, Halachev MR, Gautier P, Yeyati PL, Bonthron DT, Carr IM, Hayward B, Markham AF, Hope JE, von Kriegsheim A, Mitchison HM, Jackson IJ, Durand B, Reith W, Sheridan E, Jarman AP, Mill P.

PLoS Genet. 2014 Sep 18;10(9):e1004577. doi: 10.1371/journal.pgen.1004577. eCollection 2014 Sep.

5.

Mutations in ZMYND10, a gene essential for proper axonemal assembly of inner and outer dynein arms in humans and flies, cause primary ciliary dyskinesia.

Moore DJ, Onoufriadis A, Shoemark A, Simpson MA, zur Lage PI, de Castro SC, Bartoloni L, Gallone G, Petridi S, Woollard WJ, Antony D, Schmidts M, Didonna T, Makrythanasis P, Bevillard J, Mongan NP, Djakow J, Pals G, Lucas JS, Marthin JK, Nielsen KG, Santoni F, Guipponi M, Hogg C, Antonarakis SE, Emes RD, Chung EM, Greene ND, Blouin JL, Jarman AP, Mitchison HM.

Am J Hum Genet. 2013 Aug 8;93(2):346-56. doi: 10.1016/j.ajhg.2013.07.009. Epub 2013 Jul 25.

6.

Effete, a Drosophila chromatin-associated ubiquitin-conjugating enzyme that affects telomeric and heterochromatic position effect variegation.

Cipressa F, Romano S, Centonze S, zur Lage PI, Vernì F, Dimitri P, Gatti M, Cenci G.

Genetics. 2013 Sep;195(1):147-58. doi: 10.1534/genetics.113.153320. Epub 2013 Jul 2.

7.

Forkhead transcription factor Fd3F cooperates with Rfx to regulate a gene expression program for mechanosensory cilia specialization.

Newton FG, zur Lage PI, Karak S, Moore DJ, Göpfert MC, Jarman AP.

Dev Cell. 2012 Jun 12;22(6):1221-33. doi: 10.1016/j.devcel.2012.05.010.

8.

Linking specification to differentiation: From proneural genes to the regulation of ciliogenesis.

zur Lage PI, Simpson TI, Jarman A.

Fly (Austin). 2011 Oct-Dec;5(4):322-6. doi: 10.4161/fly.5.4.16159. Epub 2011 May 11.

9.

The gene regulatory cascade linking proneural specification with differentiation in Drosophila sensory neurons.

Cachero S, Simpson TI, Zur Lage PI, Ma L, Newton FG, Holohan EE, Armstrong JD, Jarman AP.

PLoS Biol. 2011 Jan 4;9(1):e1000568. doi: 10.1371/journal.pbio.1000568.

10.

The function and regulation of the bHLH gene, cato, in Drosophila neurogenesis.

zur Lage PI, Jarman AP.

BMC Dev Biol. 2010 Mar 26;10:34. doi: 10.1186/1471-213X-10-34.

11.
12.

EGF receptor signaling triggers recruitment of Drosophila sense organ precursors by stimulating proneural gene autoregulation.

zur Lage PI, Powell LM, Prentice DR, McLaughlin P, Jarman AP.

Dev Cell. 2004 Nov;7(5):687-96.

13.

The proneural proteins Atonal and Scute regulate neural target genes through different E-box binding sites.

Powell LM, Zur Lage PI, Prentice DR, Senthinathan B, Jarman AP.

Mol Cell Biol. 2004 Nov;24(21):9517-26.

14.

The Drosophila proneural gene amos promotes olfactory sensillum formation and suppresses bristle formation.

zur Lage PI, Prentice DR, Holohan EE, Jarman AP.

Development. 2003 Oct;130(19):4683-93.

15.

amos, a proneural gene for Drosophila olfactory sense organs that is regulated by lozenge.

Goulding SE, zur Lage P, Jarman AP.

Neuron. 2000 Jan;25(1):69-78.

17.

Genetic and molecular analysis of smooth, a quantitative trait locus affecting bristle number in Drosophila melanogaster.

zur Lage P, Shrimpton AD, Flavell AJ, Mackay TF, Brown AJ.

Genetics. 1997 Jun;146(2):607-18.

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