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Critical role of the first transmembrane domain of Cx26 in regulating oligomerization and function

机译:Cx26的第一个跨膜域在调节寡聚和功能中的关键作用

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To identify motifs involved in oligomerization of the gap junction protein Cx26, we studied individual transmembrane (TM) domains and the full-length protein. Using the TOXCAT assay for interactions of isolated TM α-helices, we found that TM1, a Cx26 pore domain, had a strong propensity to homodimerize. We identified amino acids Val-37–Ala-40 (VVAA) as the TM1 motif required for homodimerization. Two deafness-associated Cx26 mutations localized in this region, Cx26V37I and Cx26A40G, differentially affected dimerization. TM1-V37I dimerized only weakly, whereas TM1-A40G did not dimerize. When the full-length mutants were expressed in HeLa cells, both Cx26V37I and Cx26A40G formed oligomers less efficiently than wild-type Cx26. A Cx26 cysteine substitution mutant, Cx26V37C formed dithiothreitol- sensitive dimers. Substitution mutants of Val-37 formed intercellular channels with reduced function, while mutants of Ala-40 did not form functional gap junction channels. Unlike wild-type Cx26, neither Cx26V37I nor Cx26A40G formed functional hemichannels in low extracellular calcium. Thus the VVAA motif of Cx26 is critical for TM1 dimerization, hexamer formation, and channel function. The differential effects of VVAA mutants on hemichannels and gap junction channels imply that inter-TM interactions can differ in unapposed and docked hemichannels. Moreover, Cx26 oligomerization appears dependent on transient TM1 dimerization as an intermediate step.
机译:为了确定与间隙连接蛋白Cx26的寡聚有关的基序,我们研究了单个跨膜(TM)域和全长蛋白。使用TOXCAT分析分离的TMα螺旋的相互作用,我们发现TM1(一个Cx26孔结构域)具有很强的均二聚倾向。我们鉴定出氨基酸Val-37–Ala-40(VVAA)是同源二聚化所需的TM1基序。位于该区域的两个与耳聋相关的Cx26突变Cx26V37I和Cx26A40G差异影响了二聚化。 TM1-V37I仅微弱地二聚,而TM1-A40G没有二聚。当全长突变体在HeLa细胞中表达时,Cx26V37I和Cx26A40G形成寡聚物的效率均低于野生型Cx26。 Cx26半胱氨酸替代突变体Cx26V37C形成了对二硫苏糖醇敏感的二聚体。 Val-37的替代突变体形成功能降低的细胞间通道,而Ala-40的突变体未形成功能性间隙连接通道。与野生型Cx26不同,Cx26V37I和Cx26A40G均未在低细胞外钙中形成功能性半通道。因此,Cx26的VVAA基序对于TM1二聚化,六聚体形成和通道功能至关重要。 VVAA突变体对半通道和间隙连接通道的不同影响表明,TM间的相互作用在无位置和对接的半通道中可能不同。此外,Cx26低聚似乎依赖于过渡TM1二聚化作为中间步骤。

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