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Ttll5/stamp 基因(微管酪氨酸连接酶样蛋白 5/SRC-1 和 TIF2 相关调节蛋白基因)在雄性小鼠中的缺失会导致精子畸形和不育。

Disruption of Ttll5/stamp gene (tubulin tyrosine ligase-like protein 5/SRC-1 and TIF2-associated modulatory protein gene) in male mice causes sperm malformation and infertility.

机构信息

Steroid Hormones Section, Laboratory of Endocrinology and Receptor Biology, NIDDK, National Institutes of Health, Bethesda, Maryland 20892-1772, USA.

出版信息

J Biol Chem. 2013 May 24;288(21):15167-80. doi: 10.1074/jbc.M113.453936. Epub 2013 Apr 4.

DOI:10.1074/jbc.M113.453936
PMID:23558686
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3663537/
Abstract

TTLL5/STAMP (tubulin tyrosine ligase-like family member 5) has multiple activities in cells. TTLL5 is one of 13 TTLLs, has polyglutamylation activity, augments the activity of p160 coactivators (SRC-1 and TIF2) in glucocorticoid receptor-regulated gene induction and repression, and displays steroid-independent growth activity with several cell types. To examine TTLL5/STAMP functions in whole animals, mice were prepared with an internal deletion that eliminated several activities of the Stamp gene. This mutation causes both reduced levels of STAMP mRNA and C-terminal truncation of STAMP protein. Homozygous targeted mutant (Stamp(tm/tm)) mice appear normal except for marked decreases in male fertility associated with defects in progressive sperm motility. Abnormal axonemal structures with loss of tubulin doublets occur in most Stamp(tm/tm) sperm tails in conjunction with substantial reduction in α-tubulin polyglutamylation, which closely correlates with the reduction in mutant STAMP mRNA. The axonemes in other structures appear unaffected. There is no obvious change in the organs for sperm development of WT versus Stamp(tm/tm) males despite the levels of WT STAMP mRNA in testes being 20-fold higher than in any other organ examined. This defect in male fertility is unrelated to other Ttll genes or 24 genes previously identified as important for sperm function. Thus, STAMP appears to participate in a unique, tissue-selective TTLL-mediated pathway for α-tubulin polyglutamylation that is required for sperm maturation and motility and may be relevant for male fertility.

摘要

TTLL5/STAMP(微管酪氨酸连接酶样家族成员 5)在细胞中具有多种活性。TTLL5 是 13 种 TTLL 之一,具有多聚谷氨酸化活性,增强 p160 共激活因子(SRC-1 和 TIF2)在糖皮质激素受体调节基因诱导和抑制中的活性,并显示出与几种细胞类型的类固醇非依赖性生长活性。为了研究 TTLL5/STAMP 在整个动物体内的功能,制备了内部缺失突变的小鼠,该突变消除了 Stamp 基因的几种活性。这种突变导致 STAMP mRNA 水平降低和 STAMP 蛋白 C 端截断。纯合靶向突变(Stamp(tm/tm))小鼠除了与精子运动渐进性缺陷相关的雄性生育力显著降低外,看起来正常。在大多数 Stamp(tm/tm)精子尾部中,与微管二联体缺失相关的异常轴丝结构,与 α-微管多聚谷氨酸化的大量减少密切相关,这与突变型 STAMP mRNA 的减少密切相关。其他结构的轴丝似乎没有受到影响。尽管 WT STAMP mRNA 在睾丸中的水平比任何其他检查的器官高 20 倍,但 WT 与 Stamp(tm/tm)雄性的精子发生器官没有明显变化。这种雄性生育力的缺陷与其他 Ttll 基因或 24 个先前被确定为对精子功能重要的基因无关。因此,STAMP 似乎参与了一种独特的、组织选择性的 TTLL 介导的α-微管多聚谷氨酸化途径,该途径对于精子成熟和运动是必需的,并且可能与雄性生育力有关。

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