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首页> 外文期刊>Human Molecular Genetics >Non-syndromic vestibular disorder with otoconial agenesis in tilted/mergulhador mice caused by mutations in otopetrin 1.
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Non-syndromic vestibular disorder with otoconial agenesis in tilted/mergulhador mice caused by mutations in otopetrin 1.

机译:由otopetrin 1突变引起的倾斜/ mergulhador小鼠耳锥性发育不全的非综合征性前庭疾病。

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摘要

Otoconia are biominerals within the utricle and saccule of the inner ear that are critical for the perception of gravity and linear acceleration. The classical mouse mutant tilted (tlt) and a new allele, mergulhador (mlh), are recessive mutations that affect balance by impairing otoconial morphogenesis without causing collateral deafness. The mechanisms governing otoconial biosynthesis are not known. Here we show that tlt and mlh are mutant alleles of a novel gene (Otopetrin 1, Otop1), encoding a multi-transmembrane domain protein that is expressed in the macula of the developing otocyst. Both mutants carry single point mutations leading to non-conservative amino acid substitutions that affect two putative transmembrane (TM) domains (tlt, Ala(151)-->Glu in TM3; mlh, Leu(408)-->Gln in TM8). Otop1 and Otop1-like paralogues, Otop2 and Otop3, define a new gene family with homology to the C. elegans and D. melanoganster DUF270 genes.
机译:Otoconia是内耳的囊和囊内的生物矿物,对感知重力和线性加速度至关重要。经典的小鼠突变体倾斜(tlt)和新的等位基因mergulhador(mlh)是隐性突变,它们通过损害耳锥形态发生而影响平衡而不会引起附带性耳聋。控制耳锥生物合成的机制尚不清楚。在这里,我们显示tlt和mlh是一个新基因(Otopetrin 1,Otop1)的突变等位基因,编码在发育中的囊胚黄斑中表达的跨膜结构域蛋白。两个突变体均携带单点突变,导致非保守氨基酸取代,从而影响两个假定的跨膜(TM)域(tlt,Ala(151)-> Glu在TM3中; mlh,Leu(408)-> Gln在TM8中) 。 Otop1和Otop1样的同源物Otop2和Otop3定义了一个新的基因家族,该新家族与秀丽隐杆线虫和黑腹果蝇DUF270基因具有同源性。

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