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初级纤毛的十年辉煌:审视一个曾被遗忘的细胞器。

An incredible decade for the primary cilium: a look at a once-forgotten organelle.

作者信息

Davenport James R, Yoder Bradley K

机构信息

Department of Cell Biology, University of Alabama at Birmingham, 35294, USA.

出版信息

Am J Physiol Renal Physiol. 2005 Dec;289(6):F1159-69. doi: 10.1152/ajprenal.00118.2005.

Abstract

Since the discovery that numerous proteins involved in mammalian disease localize to the basal bodies and cilia, these organelles have emerged from relative obscurity to the center of intense research efforts in an expanding number of disease- and developmental-related fields. Our understanding of the association between cilia and human disease has benefited substantially from the use of lower organisms such as Chlamydomonas and Caenorhabditis elegans and the availability of murine models and cell culture. These research endeavors led to the discovery that loss of normal ciliary function in mammals is responsible for cystic and noncystic pathology in the kidney, liver, brain, and pancreas, as well as severe developmental patterning abnormalities. In addition, the localization of proteins involved in rare human disorders such as Bardet-Biedl syndrome has suggested that cilia-related dysfunction may play a role in modern human epidemics such as hypertension, obesity, and diabetes. Although we have made great advances in demonstrating the importance of cilia over the past decade, the physiological role that this organelle plays in most tissues remains elusive. Research focused on addressing this issue will be of critical importance for a further understanding of how ciliary dysfunction can lead to such severe disease and developmental pathologies.

摘要

自从发现许多与哺乳动物疾病相关的蛋白质定位于基体和纤毛以来,这些细胞器已从相对默默无闻的状态,在越来越多与疾病和发育相关的领域中,成为了深入研究的核心。我们对纤毛与人类疾病之间关联的理解,极大地受益于对衣藻和秀丽隐杆线虫等低等生物的研究,以及小鼠模型和细胞培养技术的应用。这些研究努力促使人们发现,哺乳动物中正常纤毛功能的丧失会导致肾脏、肝脏、大脑和胰腺出现囊性和非囊性病变,以及严重的发育模式异常。此外,参与巴德-比德尔综合征等罕见人类疾病的蛋白质的定位表明,纤毛相关功能障碍可能在高血压、肥胖症和糖尿病等现代人类流行病中发挥作用。尽管在过去十年里,我们在证明纤毛的重要性方面取得了巨大进展,但这个细胞器在大多数组织中所起的生理作用仍然难以捉摸。专注于解决这一问题的研究,对于进一步理解纤毛功能障碍如何导致如此严重的疾病和发育病理至关重要。

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