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Insights into KIF11 pathogenesis in microcephaly-lymphedema-chorioretinopathy syndrome from a lymphatic perspective
Kazim Ogmen, Sara E. Dobbins, Rose Yinghan Behncke, Ines Martinez-Corral, Ryan C.S. Brown, Michelle Meier, Sascha Ulferts, Nils Rouven Hansmeier, Ege Sackey, Ahlam Alqahtani, Christina Karapouliou, Dionysios Grigoriadis, Juan C. Del Rey Jimenez, Michael Oberlin, Denise Williams, Arzu Ekici, Kadri Karaer, Steve Jeffery, Peter Mortimer, Kristiana Gordon, Kazuhide S. Okuda, Benjamin M. Hogan, Taija Mäkinen, René Hägerling, Sahar Mansour, Silvia Martin-Almedina, Pia Ostergaard
Kazim Ogmen, Sara E. Dobbins, Rose Yinghan Behncke, Ines Martinez-Corral, Ryan C.S. Brown, Michelle Meier, Sascha Ulferts, Nils Rouven Hansmeier, Ege Sackey, Ahlam Alqahtani, Christina Karapouliou, Dionysios Grigoriadis, Juan C. Del Rey Jimenez, Michael Oberlin, Denise Williams, Arzu Ekici, Kadri Karaer, Steve Jeffery, Peter Mortimer, Kristiana Gordon, Kazuhide S. Okuda, Benjamin M. Hogan, Taija Mäkinen, René Hägerling, Sahar Mansour, Silvia Martin-Almedina, Pia Ostergaard
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Research Article Clinical Research Genetics Vascular biology

Insights into KIF11 pathogenesis in microcephaly-lymphedema-chorioretinopathy syndrome from a lymphatic perspective

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Abstract

Pathogenic variants in kinesin KIF11 underlie microcephaly-lymphedema-chorioretinopathy (MLC) syndrome. Although well known for regulating spindle dynamics ensuring successful cell division, the association of KIF11 (encoding EG5) with development of the lymphatic system and how KIF11 pathogenic variants lead to lymphatic dysfunction and lymphedema remain unknown. Using patient-derived lymphoblastoid cells, we demonstrated that patients with MLC carrying pathogenic stop-gain variants in KIF11 have reduced mRNA and protein levels. Lymphoscintigraphy showed reduced tracer absorption, and intestinal lymphangiectasia was detected in one patient, pointing to impairment of lymphatic function caused by KIF11 haploinsufficiency. We revealed that KIF11 is expressed in early human and mouse development with the lymphatic markers VEGFR3, podoplanin, and PROX1. In zebrafish, single-cell RNA-Seq identified kif11 specifically expressed in endothelial precursors. In human lymphatic endothelial cells, EG5 inhibition with ispinesib reduced VEGFC-driven AKT phosphorylation, migration, and spheroid sprouting. KIF11 knockdown reduced PROX1 and VEGFR3 expression, providing for the first time to our knowledge a link between KIF11 and drivers of lymphangiogenesis and lymphatic identity.

Authors

Kazim Ogmen, Sara E. Dobbins, Rose Yinghan Behncke, Ines Martinez-Corral, Ryan C.S. Brown, Michelle Meier, Sascha Ulferts, Nils Rouven Hansmeier, Ege Sackey, Ahlam Alqahtani, Christina Karapouliou, Dionysios Grigoriadis, Juan C. Del Rey Jimenez, Michael Oberlin, Denise Williams, Arzu Ekici, Kadri Karaer, Steve Jeffery, Peter Mortimer, Kristiana Gordon, Kazuhide S. Okuda, Benjamin M. Hogan, Taija Mäkinen, René Hägerling, Sahar Mansour, Silvia Martin-Almedina, Pia Ostergaard

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Figure 6

Genetic and pharmacological loss of kif11 results in abnormal embryonic and vascular development in zebrafish.

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Genetic and pharmacological loss of kif11 results in abnormal embryonic ...
(A) Differential inference contrast images of 14 and 17 hpf sibling (kif11+/+ or +/uom131) and mutant embryos (kif11uom131). Somite defects, brain necrosis, and aberrant tail development observable in 100% of mutants at both time points (n = 8/8 mutants and n = 0/19 sibling at 14 hpf and n = 8/8 mutants and n = 0/7 sibling at 17 hpf). Scale bar: 100 μm. (B) Upper: brightfield images of sibling and mutant embryos at 24 hpf. Brain necrosis and reduced embryo size observable in mutants. Lower: confocal maximum projection images of Tg(fli1a:nEGFP) embryos showing reduced intersegmental vessel sprouting and vascular development likely consistent with delayed embryonic development (n = 26/26 mutants and n = 0/88 sibling). Scale bar: 1 mm. (C) Brightfield and confocal maximum projection images of DMSO control (upper) and treated (lower) embryos following exposure to 50 μM ispinesib (ISP) at 10–48 hpf. Tg(fli1a:nEGFP;lyve1b:DsRed2) used to visualize ECs, veins, and lymphatic progenitors (PL). ISP treatment caused brain necrosis, pericardial edema, and aberrant tail development (n = 26/26 ISP-treated, n = 27 1% DMSO). Scale bar: 1 mm. (D) Confocal maximum projection images of DMSO control or 50 μM ISP-treated Tg(fli1a:nEGFP;lyve1b:DsRed2) embryos at 72 hpf. ISP treatment 24 –72 hpf; 50 μM ISP-treated embryos showed impaired PL formation at horizontal myoseptum (quantified in E). Scale bar: 100 μm. (E) Zoomed images of DA and PLs from D. (F) Bar plots of EC numbers (per somite) in DA and PLs treated with increasing ISP concentrations (n = 11, 1% DMSO; n = 12, 10 μM ISP; n = 12, 25 μM ISP, n = 9, 50 μM ISP). Reductions in LECs and DA ECs were observed. Unpaired Student’s t test for normally distributed data and Mann-Whitney U test for non-normally distributed data. *P = 0.0261; **P = 0.0018; ***P = 0.0002; ns, nonsignificant. TD, thoracic duct; DA, dorsal aorta; EC, endothelial cell.

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