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氨基酸残基Val362在维持连接蛋白50 C末端结构以及晶状体上皮-纤维分化过程中发挥关键作用。

Amino acid residue Val362 plays a critical role in maintaining the structure of C terminus of connexin 50 and in lens epithelial-fiber differentiation.

作者信息

Shi Qian, Banks Eric A, Yu X Sean, Gu Sumin, Lauer Janelle, Fields Gregg B, Jiang Jean X

机构信息

Department of Biochemistry, University of Texas Health Science Center, San Antonio, Texas 78229-3900, USA.

出版信息

J Biol Chem. 2010 Jun 11;285(24):18415-22. doi: 10.1074/jbc.M110.107052. Epub 2010 Apr 15.

Abstract

We have previously shown that connexin (Cx) 50, unlike the other two lens connexins, Cx43 and Cx46, promotes chicken lens epithelial-fiber differentiation in a channel-independent manner. Here, we show that deletion of the PEST motif at the C terminus (CT) domain of Cx50 attenuates the stimulatory effect of Cx50 on lens fiber differentiation. Valine 362, a residue located within the PEST domain, is functionally involved. The structure of the Cx50 CT predicted by molecular modeling revealed four alpha-helices and Val(362) was found to be located in the middle of the 3rd helix. Replacement of Val(362) with amino acid residues that disrupt the alpha-helical structure predicted by molecular modeling, such as arginine, glutamate, or phenylalanine, attenuated the stimulatory effects of Cx50 on lens differentiation, whereas replacement with threonine, isoleucine, leucine, or proline, which maintain the structure preserved the function of Cx50. Circular dichroism (CD) studies supported the structural predictions and showed that the substitution with Glu, but not Thr or Pro, disrupted the alpha-helix, which appears to be the structural feature important for lens epithelial-fiber differentiation. Together, our results suggest that Val(362) is important for maintaining the helical structure and is crucial for the role of Cx50 in promoting lens epithelial-fiber differentiation.

摘要

我们之前已经表明,与另外两种晶状体连接蛋白Cx43和Cx46不同,连接蛋白(Cx)50以一种不依赖通道的方式促进鸡晶状体上皮-纤维分化。在此,我们表明,缺失Cx50 C末端(CT)结构域的PEST基序会减弱Cx50对晶状体纤维分化的刺激作用。位于PEST结构域内的缬氨酸362在功能上发挥作用。通过分子建模预测的Cx50 CT结构显示有四个α螺旋,并且发现Val(362)位于第三个螺旋的中间。用精氨酸、谷氨酸或苯丙氨酸等破坏分子建模预测的α螺旋结构的氨基酸残基取代Val(362),会减弱Cx50对晶状体分化的刺激作用,而用苏氨酸、异亮氨酸、亮氨酸或脯氨酸取代,这些氨基酸能维持结构,从而保留了Cx50的功能。圆二色性(CD)研究支持了结构预测,并表明用Glu取代会破坏α螺旋,但用Thr或Pro取代则不会,α螺旋似乎是对晶状体上皮-纤维分化重要的结构特征。总之,我们的结果表明Val(362)对于维持螺旋结构很重要,并且对于Cx50在促进晶状体上皮-纤维分化中的作用至关重要。

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