Sargiannidou Irene, Vavlitou Natalie, Aristodemou Sophia, Hadjisavvas Andreas, Kyriacou Kyriacos, Scherer Steven S, Kleopa Kleopas A
Neuroscience Laboratory, The Cyprus Institute of Neurology and Genetics, 1683 Nicosia, Cyprus.
J Neurosci. 2009 Apr 15;29(15):4736-49. doi: 10.1523/JNEUROSCI.0325-09.2009.
The gap junction (GJ) protein connexin32 (Cx32) is expressed by myelinating Schwann cells and oligodendrocytes and is mutated in X-linked Charcot-Marie-Tooth disease. In addition to a demyelinating peripheral neuropathy, some Cx32 mutants are associated with transient or chronic CNS phenotypes. To investigate the molecular basis of these phenotypes, we generated transgenic mice expressing the T55I or the R75W mutation and an IRES-EGFP, driven by the mouse Cnp promoter. The transgene was expressed in oligodendrocytes throughout the CNS and in Schwann cells. Both the T55I and the R75W mutants were localized in the perinuclear cytoplasm, did not form GJ plaques, and did not alter the expression or localization of two other oligodendrocytic GJ proteins, Cx47 and Cx29, or the expression of Cx29 in Schwann cells. On wild type background, the expression of endogenous mCx32 was unaffected by the T55I mutant, but was partly impaired by R75W. Transgenic mice with the R75W mutation and all mutant animals with Gjb1-null background developed a progressive demyelinating peripheral neuropathy along with CNS myelination defects. These findings suggest that Cx32 mutations result in loss of function in myelinated cells without trans-dominant effects on other GJ proteins. Loss of Cx32 function alone in the CNS causes myelination defects.
缝隙连接(GJ)蛋白连接蛋白32(Cx32)由髓鞘形成雪旺细胞和少突胶质细胞表达,在X连锁型夏科-马里-图斯病中发生突变。除了脱髓鞘性周围神经病外,一些Cx32突变体还与短暂性或慢性中枢神经系统表型相关。为了研究这些表型的分子基础,我们构建了由小鼠Cnp启动子驱动的表达T55I或R75W突变以及IRES-EGFP的转基因小鼠。转基因在整个中枢神经系统的少突胶质细胞和雪旺细胞中表达。T55I和R75W突变体均定位于核周细胞质中,不形成GJ斑块,也不改变另外两种少突胶质细胞GJ蛋白Cx47和Cx29的表达或定位,以及雪旺细胞中Cx29的表达。在野生型背景下,内源性mCx32的表达不受T55I突变体的影响,但受到R75W的部分损害。具有R75W突变的转基因小鼠以及所有具有Gjb1基因敲除背景的突变动物均出现进行性脱髓鞘性周围神经病以及中枢神经系统髓鞘形成缺陷。这些发现表明,Cx32突变导致有髓细胞功能丧失,而对其他GJ蛋白没有反式显性作用。中枢神经系统中单独的Cx32功能丧失会导致髓鞘形成缺陷。