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α1(XI)型胶原基因可变剪接体在胎鼠软骨中的时空表达

Temporal and spatial expression of alternative splice-forms of the alpha1(XI) collagen gene in fetal rat cartilage.

作者信息

Davies G B, Oxford J T, Hausafus L C, Smoody B F, Morris N P

机构信息

Shriners Hospital for Children, Portland, Oregon, USA.

出版信息

Dev Dyn. 1998 Sep;213(1):12-26. doi: 10.1002/(SICI)1097-0177(199809)213:1<12::AID-AJA2>3.0.CO;2-0.

Abstract

Type XI collagen, a member of the group of fibrillar collagens, plays a regulatory role in the formation of the collagen fibril network in cartilage and consequently plays a pivotal role in the formation of the endochondral skeleton. The mechanism by which type XI collagen limits fibril growth appears to involve the large noncollagenous amino terminal domain. Complex alternative splicing occurs within this domain in two of the three constituent subunits, alpha1(XI) and alpha2(XI). In the alpha1(XI) chain, three alternatively spliced exons encoding one very basic and two very acidic peptides generate six spliceforms and protein isoforms. In order to better understand the significance of this alternative splicing, we have examined fetal rat cartilage to determine: (a) the relationship between alternative splicing and chondrogenesis in limb bud micromass culture; (b) the relative levels of expression of each of the splice-forms by ribonuclease protection; and (c) the distribution of splice-forms and protein isoforms by in situ hybridization and immunohistochemistry. The results indicate that the pattern of alternative splicing of the alpha1(XI) chain is tightly linked to chondrogenesis. The two most abundant spliceforms in fetal rib cartilage are v(o), lacking all three exons, and v1b, containing the exon encoding the basic peptide. While most of the spliceforms show a general distribution in nasal, Meckel's, and rib cartilage, v1b was restricted to the dorsal portion of the fetal rib. This distribution appears to correlate with the portion of the rib which will ultimately ossify, rather than with any of the differentiative states of chondrocytes. Together these results suggest that alternative splicing within the amino terminal domain of the alpha1(XI) chain may contribute to the function of type XI collagen and that expression of the basic v1b peptide may play a role in endochondral ossification.

摘要

XI型胶原蛋白是纤维状胶原蛋白家族的一员,在软骨中胶原纤维网络的形成过程中发挥调节作用,因此在软骨内骨骼的形成中起关键作用。XI型胶原蛋白限制纤维生长的机制似乎涉及到较大的非胶原氨基末端结构域。在三个组成亚基中的两个,即α1(XI)和α2(XI)中,该结构域内发生复杂的可变剪接。在α1(XI)链中,三个可变剪接外显子编码一个非常碱性和两个非常酸性的肽段,产生六种剪接形式和蛋白质异构体。为了更好地理解这种可变剪接的意义,我们检测了胎鼠软骨,以确定:(a)肢芽微团培养中可变剪接与软骨形成之间的关系;(b)通过核糖核酸酶保护法检测每种剪接形式的相对表达水平;(c)通过原位杂交和免疫组织化学检测剪接形式和蛋白质异构体的分布。结果表明,α1(XI)链的可变剪接模式与软骨形成紧密相关。胎鼠肋软骨中两种最丰富的剪接形式是v(o),它缺少所有三个外显子,以及v1b,它含有编码碱性肽段的外显子。虽然大多数剪接形式在鼻软骨、梅克尔软骨和肋软骨中普遍分布,但v1b仅限于胎鼠肋骨的背侧部分。这种分布似乎与最终会骨化的肋骨部分相关,而不是与软骨细胞的任何分化状态相关。这些结果共同表明,α1(XI)链氨基末端结构域内的可变剪接可能有助于XI型胶原蛋白的功能,并且碱性v1b肽段的表达可能在软骨内骨化中发挥作用。

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