Department of Biochemistry, Kobe Pharmaceutical University, Higashinada-ku, Kobe 658-8558, Japan.
Biochem J. 2013 Aug 15;454(1):133-45. doi: 10.1042/BJ20130323.
The gene products of two members of the EXT (exostosin) gene family, EXT1 and EXT2, function together as a polymerase in the biosynthesis of heparan sulfate. EXTL2 (EXT-like 2), one of the three EXTL genes in the human genome that are homologous to EXT1 and EXT2, encodes an N-acetylhexosaminyltransferase. We have demonstrated that EXTL2 terminates chain elongation of GAGs (glycosaminoglycans), and thereby regulates GAG biosynthesis. The abnormal GAG biosynthesis caused by loss of EXTL2 had no effect on normal development or normal adult homoeostasis. Therefore we examined the role of EXTL2 in CCl4 (carbon tetrachloride)-induced liver failure, a model of liver disease. On the fifth day after CCl4 administration, the liver/body weight ratio was significantly smaller for EXTL2-knockout mice than for wild-type mice. Consistent with this observation, hepatocyte proliferation following CCl4 treatment was lower in EXTL2-knockout mice than in wild-type mice. EXTL2-knockout mice experienced less HGF (hepatocyte growth factor)-mediated signalling than wild-type mice specifically because GAG synthesis was altered in these mutant mice. In addition, GAG synthesis in hepatic stellate cells was up-regulated during liver repair in EXTL2-knockout mice. Taken together, the results of the present study indicated that EXTL2-mediated regulation of GAG synthesis was important to the tissue regeneration processes that follow liver injury.
EXT(外切糖基酶)基因家族的两个成员 EXT1 和 EXT2 的基因产物共同作为聚合酶在肝素硫酸的生物合成中起作用。EXTL2(EXT 样 2)是人类基因组中与 EXT1 和 EXT2 同源的三个 EXTL 基因之一,编码 N-乙酰己糖胺基转移酶。我们已经证明 EXTL2 终止 GAG(糖胺聚糖)链的延伸,从而调节 GAG 生物合成。由于 EXTL2 的缺失导致的异常 GAG 生物合成对正常发育或正常成年体内平衡没有影响。因此,我们研究了 EXTL2 在 CCl4(四氯化碳)诱导的肝衰竭中的作用,这是一种肝病模型。在 CCl4 给药后的第五天,EXTL2 基因敲除小鼠的肝体比明显小于野生型小鼠。与这一观察结果一致,在 CCl4 处理后,EXTL2 基因敲除小鼠的肝细胞增殖低于野生型小鼠。EXTL2 基因敲除小鼠经历的 HGF(肝细胞生长因子)介导的信号转导比野生型小鼠少,这是因为这些突变小鼠的 GAG 合成发生了改变。此外,在 EXTL2 基因敲除小鼠的肝修复过程中,肝星状细胞中的 GAG 合成上调。总之,本研究的结果表明,EXTL2 介导的 GAG 合成调节对肝损伤后的组织再生过程很重要。