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LOXL2基因编码一种新的赖氨酰氧化酶样蛋白,在生殖组织中高水平表达。

The LOXL2 gene encodes a new lysyl oxidase-like protein and is expressed at high levels in reproductive tissues.

作者信息

Jourdan-Le Saux C, Tronecker H, Bogic L, Bryant-Greenwood G D, Boyd C D, Csiszar K

机构信息

Pacific Biomedical Research Center, University of Hawaii, Honolulu, Hawaii 96822, USA.

出版信息

J Biol Chem. 1999 Apr 30;274(18):12939-44. doi: 10.1074/jbc.274.18.12939.

Abstract

We have reported in this paper the complete cDNA sequence, gene structure, and tissue-specific expression of LOXL2, a new amine oxidase and a member of an emerging family of human lysyl oxidases. The predicted amino acid sequence, from several overlapping cDNA clones isolated from placenta and spleen cDNA libraries, shared extensive sequence homology with the conserved copper-binding and catalytic domains of both lysyl oxidase (LOX) and the lysyl oxidase-like (LOXL) protein. These conserved domains are encoded by five consecutive exons within the LOX, LOXL, and LOXL2 genes that also maintained exon-intron structure conservation. In contrast, six exons encoding the amino-terminal domains diverged both in sequence and structure. Exon 1 of the LOXL2 gene does not encode a signal sequence that is present in LOX and LOXL, suggesting a different processing and intracellular localization for this new protein. Expression of the LOXL2 gene was detected in almost all tissues with the highest steady state mRNA levels in the reproductive tissues, placenta, uterus and prostate. In situ hybridization identified placental syncytial and cytotrophoblasts responsible for the synthesis of LOXL2 mRNA and demonstrated a spatial and temporal expression pattern unique to the LOXL2 gene.

摘要

我们在本文中报道了LOXL2的完整cDNA序列、基因结构及组织特异性表达情况。LOXL2是一种新的胺氧化酶,属于人类赖氨酰氧化酶新出现的家族成员。从胎盘和脾脏cDNA文库中分离出的几个重叠cDNA克隆所预测的氨基酸序列,与赖氨酰氧化酶(LOX)和赖氨酰氧化酶样(LOXL)蛋白的保守铜结合结构域和催化结构域具有广泛的序列同源性。这些保守结构域由LOX、LOXL和LOXL2基因内的五个连续外显子编码,这些外显子也保持了外显子-内含子结构的保守性。相比之下,编码氨基末端结构域的六个外显子在序列和结构上都有所不同。LOXL2基因的外显子1不编码LOX和LOXL中存在的信号序列,这表明这种新蛋白的加工和细胞内定位有所不同。在几乎所有组织中都检测到了LOXL2基因的表达,在生殖组织、胎盘、子宫和前列腺中稳态mRNA水平最高。原位杂交确定了负责合成LOXL2 mRNA的胎盘合体滋养层细胞和细胞滋养层细胞,并证明了LOXL2基因独特的时空表达模式。

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