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Fig. 1. Sequence analysis of vertebrate Pou3f proteins. (A) Sequence alignments of the Xenopus laevis (Xl) Pou3f1, Pou3f2, Pou3f3, and Pou3f4
proteins. Conserved residues are shown in bold, the POU-specific domain and the POU-homeodomain are highlighted in yellow, and the linker region
is indicated in cyan. (B) The percentage of sequence identity for each vertebrate Pou3f subfamily (Pou3f1, Pou3f2, Pou3f3, and Pou3f4) relative to the
Xenopus laevis sequence is indicated for the POU-specific domain, the linker, the POU-homedomain as well as for the whole (i.e. full-length) protein.
The percentages are the average sequence identities of the human (Homo sapiens), mouse (Mus musculus), chicken (Gallus gallus), and spotted gar
(Lepisosteus oculatus) sequences relative to the African clawed frog (Xenopus laevis) sequence.
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Fig. 2. Phylogenetic relationship of vertebrate Pou3f proteins. Phylogenetic
tree of the Pou3f family based on sequences from human (Homo
sapiens, Hs), mouse (Mus musculus, Mm), chicken (Gallus gallus, Gg),
African clawed frog (Xenopus laevis, Xl), zebrafish (Danio rerio, Dr), medaka
(Oryzias latipes, Ol), Japanese puffer (Takifugu rubripes, Tr), spotted gar
(Lepisosteus oculatus, Lo), Florida amphioxus (Branchiostoma floridae, Bf),
and the purple sea urchin (Strongylocentrotus purpuratus, Sp). The Pou3f1,
Pou3f2, Pou3f3, and Pou3f4 subfamilies are respectively highlighted in
blue, green, yellow, and orange. The tree was rooted with members of the
Pou4f1 subfamily. Although trees were calculated using both the Maximum
Likelihood (ML) and Bayesian Inference (BI) methods, only the ML tree is
shown, with branch lengths being representative of sequence substitution
rates. Branch support is indicated as bootstrap percentages from the
ML analysis (ranging from 0 to 100) / posterior probabilities (ranging from
0 to 1) from the BI analysis. â--â indicates that the branching patterns of
the ML and BI analyses diverged at this node and that one of the scores
is thus unavailable.
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Fig. 3. Genomic organization of vertebrate pou3f loci. Genomic organization and gene synteny comparisons of vertebrate pou3f1, pou3f2, pou3f3, and pou3f4 genes. Dotted lines represent chromosome loci in the genomes of human (Homo sapiens, Hs), chicken (Gallus gallus, Gg), Western clawed frogs (Xenopus tropicalus, Xt), zebrafish (Danio rerio, Dr), medaka (Oryzias latipes, Ol), Japanese puffers (Takifugu rubripes, Tr), and spotted gars (Lepisosteus oculatus, Lo). Genes are shown as colored pentagon arrows, with the transcriptional orientation of a given gene locus being indicated by the direction of the arrow. When a pou3f paralog is not found in a given species, the pentagon is white. Gene loci are named according to the nomenclature used in human and orthologs in the different species are shown in identical colors. Gene paralogs are indicated by letters. Bold black lines between polygons mark changes in genetic linkage and hence in gene synteny relative to the situation in the human genome.
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Fig. 4 (left). Spatio-temporal expression of pou3f1 during Xenopus laevis development. (A) Expression of pou3f1 analyzed by real-time quantitative
polymerase chain reaction (RT-qPCR) at indicated stages of development. Average values from three independent experiments. (B) Whole mount
in situ hybridization for pou3f1 at indicated stages of development. Early gastrula, vegetal view (a). Neurula, dorsal view (b,c). Tailbud, dorsal (d) and
lateral (f) view. Tadpole, lateral view (g,i). Transverse sections at the level of the developing brain at tailbud stage (e) and at the level of the developing
eye at tadpole stage (h). Abbreviations: e, eye; ep, epidermis; fb, forebrain; hb, hindbrain; mb, midbrain; nf, neural fold; np, neural plate; nt, neural
tube; op, optic placode. (C) Expression of pou3f1 analyzed by RT-qPCR on dissected explants from tailbud-stage embryos, stage 25. Embryos were
dissected either into ventral and dorsal halves or into tailbud, pronephros and head. Average values from three independent experiments. *: P < 0,05;
**: P < 0,005, relative to the whole embryo.
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pou3f1 (POU class 3 homeobox 1) gene expression in Xenopus laevis embryo, assayed via in situ hybridization, NF stage 10.5 , blastoporal view, dorsal up.
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pou3f1 (POU class 3 homeobox 1) gene expression in Xenopus laevis embryo, assayed via in situ hybridization, NF stage 16, dorsal view, anterior right.
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pou3f1 (POU class 3 homeobox 1) gene expression in Xenopus laevis embryo, assayed via in situ hybridization, NF stage 23, (d) lateral view, anterior right, and (e) transverse sections at the level of the developing brain, dorsal up.
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pou3f1 (POU class 3 homeobox 1) gene expression in Xenopus laevis embryo, assayed via in situ hybridization, NF stage 28, lateral view, anterior right, dorsal up.
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pou3f1 (POU class 3 homeobox 1) gene expression in Xenopus laevis embryo, assayed via in situ hybridization, NF stage 39, lateral view, anterior right, dorsal up.
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Fig. 5 (right). Spatio-temporal expression of pou3f2 during Xenopus laevis development. (A) Whole mount in situ hybridization for pou3f2 at
indicated stages of development. Neurula, dorsal view (a,b). Tailbud, dorsal (c) and lateral (e) view. Tadpole, lateral view (f,i). Transverse sections at the
level of the developing brain (d,g,h), and otic vesicle (h). Abbreviations: (fb) forebrain, (hb) hindbrain, (mb) midbrain, (nt) neural tube, (om) otic mesenchyme,
(ov) otic vesicle. (B) Expression of pou3f2 analyzed by real-time quantitative polymerase chain reaction (RT-qPCR) on dissected explants from
tailbud embryos (stage 25). Embryos were dissected either into ventral and dorsal halves or into tailbud, pronephros and head. *: P < 0,05; ***: P <
0,001, relative to the whole embryo.
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pou3f2 (POU class 3 homeobox 2) gene expression in Xenopus laevis embryo, assayed via in situ hybridization, NF stage 14, dorsal view, anterior right.
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pou3f2 (POU class 3 homeobox 2) gene expression in Xenopus laevis embryo, assayed via in situ hybridization, NF stage 16, dorsal view, anterior right.
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pou3f2 (POU class 3 homeobox 2) gene expression in Xenopus laevis embryo, assayed via in situ hybridization, NF stage 23, dorsal view, anterior right.
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pou3f2 (POU class 3 homeobox 2) gene expression in Xenopus laevis embryo, assayed via in situ hybridization, NF stage 39, lateral view, anterior right, dorsal up.
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Fig. 6 (left). Spatio-temporal expression of pou3f3 during Xenopus laevis development. (A) Expression of pou3f3 analyzed by real-time quantitative
polymerase chain reaction (RT-qPCR) at indicated stages of development. (B) Whole mount in situ hybridization for pou3f3 at indicated stages of development.
Neurula, dorsal view (a,b). Tailbud, dorsal (c) and lateral (d,f) view. Tadpole, lateral view (g,i). Transverse sections at the level of the developing
pronephros (e,h). Abbreviations: (fb) forebrain, (hb) hindbrain, (mb) midbrain, (nt) neural tube, (ov) otic vesicle, (p) pronephros. (C) Expression of pou3f3
analyzed by RT-qPCR on dissected explants from tailbud-stage embryos (stage 25). Embryos were dissected either into ventral and dorsal halves or
into tail bud, pronephros and head. **: P < 0,005; ***: P < 0,001, relative to the ventral half.
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pou3f3 (POU class 3 homeobox 3) gene expression in Xenopus laevis embryo, assayed via in situ hybridization, NF stage 14, dorsal view, anterior right.
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pou3f3 (POU class 3 homeobox 3) gene expression in Xenopus laevis embryo, assayed via in situ hybridization, NF stage 16, dorsal view, anterior right.
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pou3f3 (POU class 3 homeobox 3) gene expression in Xenopus laevis embryo, assayed via in situ hybridization, NF stage 25,(d) lateral view, anterior right, dorsal up, ( e) in transverse section at the level of pronephros, dorsal up.
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pou3f3 (POU class 3 homeobox 3) gene expression in Xenopus laevis embryo, assayed via in situ hybridization, NF stage 39, lateral view, anterior right, dorsal up.
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Fig. 7 (right). Spatio-temporal expression of pou3f4 during Xenopus laevis development. (A) Expression of pou3f4 analyzed by real-time quantitative
polymerase chain reaction (RT-qPCR) at indicated stages of development. Average values from three independent experiments. (B) Whole mount
in situ hybridization for pou3f4 at indicated stages of development. Neurula, dorsal view (a). Tailbud, dorsal (b) and lateral view (c,e). Tadpole, lateral (f,i)
view. Transverse sections at the level of the developing pronephros (d,h) and otic vesicle (g). Abbreviations: (fb) forebrain, (hb) hindbrain, (mb) midbrain,
(nt) neural tube, (om) otic mesenchyme, (ov) otic vesicle, (p) pronephros. (C) Expression of pou3f4 analyzed by RT-qPCR on dissected explants from
tailbud-stage embryos (stage 25). Embryos were dissected either into ventral and dorsal halves or into tail bud, pronephros and head. *: P < 0,05; **:
P < 0,005, relative to the whole embryo.
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pou3f4 (POU class 3 homeobox 4) gene expression in Xenopus laevis embryo, assayed via in situ hybridization, NF stage 16, dorsal view, anterior right.
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pou3f4 (POU class 3 homeobox 4) gene expression in Xenopus laevis embryo, assayed via in situ hybridization, NF stage 23, (b) dorsal view, anterior right, and (c) lateral view, anterior right, dorsal up.
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pou3f4 (POU class 3 homeobox 4) gene expression in Xenopus laevis embryo, assayed via in situ hybridization, NF stage 23, traverse section at the level of the developing pronephric kidney.
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pou3f4 (POU class 3 homeobox 4) gene expression in Xenopus laevis embryo, assayed via in situ hybridization, NF stage 39, lateral view, anterior right, dorsal up.
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Fig. 8. Differential pronephric expression of pouf3 and pou3f4 in Xenopus laevis.
Whole mount in situ hybridization analysis of pronephric expression of pou3f3 and pou3f4 (dark blue) compared to pax8 (light blue) in tailbud-stage embryos (stage 25) (A) and in the differentiated tubule in late tailbud-stage embryos (st 35) (B). Transverse sections in the anterior (A.f,j) and posterior part (A.g,k) of the anlage, and in the anterior part of the tubule (B.f,i). (C) Schematic representation of pou3f3 and pou3f4 expression in the pronephros: transverse section of a tailbud-stage embryo (left), lateral view of the pronephric anlage (middle) and of the differentiated tubule (right).
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