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1                                              SHOX expression is reduced on the inactive X chromosome
2                                              SHOX gene mutations have been shown to cause idiopathic
3                                              SHOX is a homeobox-containing gene, highly conserved amo
4                                              SHOX is, however, closely related to the SHOX2 homeobox
5 ted members, SHOX and SHOX2 in humans, but a SHOX ortholog does not exist in the mouse genome.
6                        We further created an SHOX/Shox2 knock-in mouse line (replacement of Shox2 wit
7                                  We analysed SHOX and SHOX2 expression during human embryonic develop
8 on five genes (IGF1R, NPPC, NPR2, FGFR3, and SHOX) with evidence for bidirectional effects on stature
9 igate possible functional redundancy between SHOX and SHOX2 in vitro and in vivo.
10 d second pharyngeal arches not only explains SHOX -related short stature phenotypes, but also for the
11 ribed short stature homeobox-containing gene SHOX segregating with the LWD phenotype in 5 families.
12              The short stature homeobox gene SHOX is associated with idiopathic short stature in huma
13 Mutations in the short stature homeobox gene SHOX lead to growth retardation associated with Turner,
14 Defects of the pseudoautosomal homeobox gene SHOX were previously shown to lead to short stature and
15 um over an interval of 43 kb around the gene SHOX.
16  the short stature homeobox-containing gene (SHOX) in the pseudoautosomal region of the sex chromosom
17 strate a functional redundancy between human SHOX and mouse Shox2 in the regulation of SAN formation
18 rmerly OG12) and the recently reported human SHOX gene.
19                   We first showed that human SHOX and SHOX2 and mouse Shox2 possess similar transcrip
20 , we show that mouse Shox2, similar to human SHOX, can perform opposite roles on gene expression: eit
21 ated with energy metabolism (IGFBP2, IGFBP5, SHOX, SMARCAL1, LYN, RPS20, MOS, PLAG1, CHCD7, and SDR16
22                The gene responsible for LWD, SHOX, localizes to the short-arm pseudoautosomal region
23 ily consists of two closely related members, SHOX and SHOX2 in humans, but a SHOX ortholog does not e
24 ion leading to a premature stop in exon 4 of SHOX was identified in one LWD family.
25 ferential expression in males and females of SHOX, a height-related gene in the pseudoautosomal regio
26 ri-Weill syndrome, and haploinsufficiency of SHOX was implicated to cause the short stature phenotype
27  is significantly elevated in the introns of SHOX (K=5.7%), PPP2R3L (K=8.7%) and ASMT (K=6.5%) genes
28 ive searches, no direct murine orthologue of SHOX is evident.
29          We cloned the chicken orthologue of SHOX, studied its expression pattern and compared this w
30                                  This places SHOX near the short-arm telomeres of the sex chromosome
31  consistent with the hypothesis that reduced SHOX expression in females results in a net difference i
32                                          The SHOX (short stature homeobox) gene family consists of tw
33                                          The SHOX expression pattern in the limb and first and second
34                                          The SHOX/Shox2 dose appears to be critical for normal pacema
35       We report here that in contrast to the SHOX mutations in humans, Shox2 deficiency in mice leads
36 igh as .254, which places it in proximity to SHOX.
37 ysmorphic skeletal features in patients with SHOX nonsense mutations.
38 ock-in mouse line (replacement of Shox2 with SHOX, referred as Shox2(KI/KI)).