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Miz1是毛囊结构和毛发形态发生所必需的。

Miz1 is required for hair follicle structure and hair morphogenesis.

作者信息

Gebhardt Anneli, Kosan Christian, Herkert Barbara, Möröy Tarik, Lutz Werner, Eilers Martin, Elsässer Hans-Peter

机构信息

Institute for Cell Biology, University of Marburg, Robert-Koch-Str. 6, 35033 Marburg, Germany.

出版信息

J Cell Sci. 2007 Aug 1;120(Pt 15):2586-93. doi: 10.1242/jcs.007104. Epub 2007 Jul 17.

Abstract

Previous work has implicated the Myc-binding transcription factor Miz1 in the control of keratinocyte proliferation and in the cellular response to TGFbeta. Miz1 is expressed in basal keratinocytes of the interfollicular epidermis and in hair follicles. Here we have conditionally knocked out the POZ/BTB transactivation domain of Miz1 in keratinocytes using a keratin 14 (K14)-Cre mouse deleter strain. K14Cre(+)/Miz1(lox/lox) mice have rough fur as a result of altered hair follicle orientation, irregular hair pigmentation and disturbed hair fiber structure. A regional thickening of the epidermis at the hair funnel orifice was accompanied by suprabasal proliferation, indicating a delayed exit of keratinocytes from the cell cycle. In addition, the catagen of the hair cycle was delayed in K14Cre(+)/Miz1(lox/lox) mice and intrafollicular keratinocyte proliferation was increased. In aged K14Cre(+)/Miz1(lox/lox) animals, the number of hair follicles remained unchanged but the number of visible hairs, especially of zigzag hairs, was reduced and a pigmentary incontinence into the dermis developed. Our data show that Miz1 is involved in controlling proliferation and differentiation in hair follicles and in hair fiber morphogenesis.

摘要

先前的研究认为,Myc结合转录因子Miz1参与调控角质形成细胞的增殖以及细胞对转化生长因子β(TGFβ)的反应。Miz1在毛囊间表皮的基底角质形成细胞以及毛囊中表达。在此,我们利用角蛋白14(K14)-Cre小鼠缺失品系,有条件地敲除了角质形成细胞中Miz1的POZ/BTB反式激活结构域。由于毛囊方向改变、毛发色素沉着不规则以及毛纤维结构紊乱,K14Cre(+)/Miz1(lox/lox)小鼠的毛发粗糙。在毛囊漏斗孔处的表皮出现局部增厚,并伴有基底层以上的增殖,这表明角质形成细胞退出细胞周期延迟。此外,K14Cre(+)/Miz1(lox/lox)小鼠的毛发生长期延迟,毛囊内角质形成细胞的增殖增加。在老年K14Cre(+)/Miz1(lox/lox)动物中,毛囊数量保持不变,但可见毛发的数量,尤其是之字形毛发的数量减少,并且出现了真皮内色素失禁。我们的数据表明,Miz1参与调控毛囊中的增殖和分化以及毛纤维形态发生。

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