首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Role of Chondroitin Sulfate (CS) Modification in the Regulation of Protein-tyrosine Phosphatase Receptor Type Z (PTPRZ) Activity
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Role of Chondroitin Sulfate (CS) Modification in the Regulation of Protein-tyrosine Phosphatase Receptor Type Z (PTPRZ) Activity

机译:硫酸软骨素(CS)修饰在调节蛋白酪氨酸磷酸酶受体Z型(PTPRZ)活性中的作用。

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摘要

Protein-tyrosine phosphatase receptor type Z (PTPRZ) is predominantly expressed in the developing brain as a CS proteoglycan. PTPRZ has long (PTPRZ-A) and short type (PTPRZ-B) receptor forms by alternative splicing. The extracellular CS moiety of PTPRZ is required for high-affinity binding to inhibitory ligands, such as pleiotrophin (PTN), midkine, and interleukin-34; however, its functional significance in regulating PTPRZ activity remains obscure. We herein found that protein expression of CS-modified PTPRZ-A began earlier, peaking at approximately postnatal days 5–10 (P5–P10), and then that of PTN peaked at P10 at the developmental stage corresponding to myelination onset in the mouse brain. Ptn-deficient mice consistently showed a later onset of the expression of myelin basic protein, a major component of the myelin sheath, than wild-type mice. Upon ligand application, PTPRZ-A/B in cultured oligodendrocyte precursor cells exhibited punctate localization on the cell surface instead of diffuse distribution, causing the inactivation of PTPRZ and oligodendrocyte differentiation. The same effect was observed with the removal of CS chains with chondroitinase ABC but not polyclonal antibodies against the extracellular domain of PTPRZ. These results indicate that the negatively charged CS moiety prevents PTPRZ from spontaneously clustering and that the positively charged ligand PTN induces PTPRZ clustering, potentially by neutralizing electrostatic repulsion between CS chains. Taken altogether, these data indicate that PTN-PTPRZ-A signaling controls the timing of oligodendrocyte precursor cell differentiation in vivo, in which the CS moiety of PTPRZ receptors maintains them in a monomeric active state until its ligand binding.
机译:Z型蛋白酪氨酸磷酸酶受体(PTPRZ)主要在大脑中以CS蛋白聚糖的形式表达。通过交替剪接,PTPRZ具有长型(PTPRZ-A)和短型(PTPRZ-B)受体形式。 PTPRZ的细胞外CS部分是高亲和力结合抑制性配体(如多效性蛋白(PTN),中期因子和白介素34)所必需的。但是,其在调节PTPRZ活性方面的功能意义仍然不清楚。我们在这里发现CS修饰的PTPRZ-A的蛋白质表达开始得较早,大约在出生后5-10天(P5-P10)达到峰值,然后PTN的蛋白质表达在发育阶段在P10达到峰值,这对应于小鼠大脑中的髓鞘形成。与野生型小鼠相比,Ptn缺乏的小鼠始终显示出髓鞘碱性蛋白(髓鞘的主要成分)的表达开始晚。配体应用后,培养的少突胶质前体细胞中的PTPRZ-A / B在细胞表面上呈点状定位,而不是扩散分布,从而导致PTPRZ失活和少突胶质细胞分化。用软骨素酶ABC去除CS链可观察到相同的效果,但针对PTPRZ胞外域的多克隆抗体未见到。这些结果表明,带负电荷的CS部分可防止PTPRZ自发聚集,而带正电荷的配体PTN可能通过中和CS链之间的静电排斥来诱导PTPRZ聚集。总而言之,这些数据表明PTN-PTPRZ-A信号传导控制体内少突胶质前体细胞分化的时机,其中PTPRZ受体的CS部分将它们维持在单体活性状态直至其配体结合。

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