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1 ity and appears to mediate the action of the zone of polarizing activity.
2 d region of distal posterior mesenchyme, the zone of polarizing activity.
3  role in the establishment of the endogenous zone of polarizing activity.
4  acid in the establishment of the endogenous zone of polarizing activity.
5 ed to the posterior ectoderm surrounding the zone of polarizing activity.
6 of retinoic acid in the establishment of the zone of polarizing activity.
7  and shifts anteriorly Shh expression in the zone of polarizing activity.
8     Sonic Hedgehog (Shh) is expressed in the zone of polarizing activity and appears to mediate the a
9 ior mesoderm in an area that encompasses the zone of polarizing activity and cFHF-2 is confined to th
10 rior limb buds, limits overexpression in the zone of polarizing activity and normalizes aberrant Gli3
11                   In the chick limb bud, the zone of polarizing activity controls limb patterning alo
12            However, a Shh-expressing region (zone of polarizing activity) does not reform; neverthele
13 oping limb, dHAND expression encompasses the zone of polarizing activity in the posterior region, whe
14 in the limb bud organizing centre called the zone of polarizing activity is regulated by the ZRS enha
15         Sonic hedgehog (Shh) produced in the zone of polarizing activity is the major determinant of
16                                          The zone of polarizing activity is the primary signaling cen
17 nic hedgehog (the patterning signal from the Zone of Polarizing Activity) is known to be able to acti
18 s in a dose-dependent fashion similar to the zone of polarizing activity itself.
19 ansplantation assays, we demonstrate that a "zone of polarizing activity," localized in the posterior
20 h factor; AER, apical ectodermal ridge; ZPA, zone of polarizing activity; PZ, progress zone; SHH, son
21 olydactyly, was previously identified in the zone of polarizing activity regulatory sequence (ZRS), a
22 he limb bud signaling centers, including the zone of polarizing activity (ZPA) acting through Shh, ar
23 ack loop between Sonic hedgehog (Shh) in the zone of polarizing activity (ZPA) and Fgfs in the overly
24 tterns in its signaling centers, notably the zone of polarizing activity (ZPA) and the apical ectoder
25 d to maintain the signaling loop between the zone of polarizing activity (ZPA) and the apical ectoder
26 pends on reciprocal interactions between the zone of polarizing activity (ZPA) and the apical ectoder
27 eractions between morphogens produced in the zone of polarizing activity (ZPA) and the apical epiderm
28 , we show that Sonic hedgehog (Shh) from the zone of polarizing activity (ZPA) drives myogenesis spec
29                                          The zone of polarizing activity (ZPA) in the posterior limb
30 on complex tissue interactions involving the zone of polarizing activity (ZPA) in the posterior regio
31  hedgehog (Shh) signaling from the posterior zone of polarizing activity (ZPA) is the primary determi
32 anterior-posterior axis is controlled by the zone of polarizing activity (ZPA) located at the posteri
33 the vertebrate limb, the posteriorly located zone of polarizing activity (ZPA) regulates digit identi
34 ression is restricted to a region called the zone of polarizing activity (ZPA), and this expression i
35 naling center of the posterior limb bud, the Zone of Polarizing Activity (ZPA), as has been described
36 racting signaling centers; one of these, the zone of polarizing activity (ZPA), comprises a group of
37 b bud initiation, proximal identity, and the zone of polarizing activity (ZPA), respectively.
38 ganization of signaling centers, such as the zone of polarizing activity (ZPA).
39 s, the apical ectodermal ridge (AER) and the zone of polarizing activity (ZPA).
40 ued provision of signals from the AER or the zone of polarizing activity (ZPA).
41 umptive wing region block the formation of a zone of polarizing activity (ZPA).
42 (SHH) signaling from the posteriorly located zone of polarizing activity (ZPA).

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