Laboratory of Biochemistry, Department of Pathology, University of Pisa, via Roma 55, 56126 Pisa, Italy.
Biomolecules. 2018 Aug 23;8(3):79. doi: 10.3390/biom8030079.
Multiple muscle-specific isoforms of the Zn metalloenzyme AMP deaminase (AMPD) have been identified based on their biochemical and genetic differences. Our previous observations suggested that the metal binding protein histidine-proline-rich glycoprotein (HPRG) participates in the assembly and maintenance of skeletal muscle AMP deaminase (AMPD1) by acting as a zinc chaperone. The evidence of a role of millimolar-strength phosphate in stabilizing the AMPD-HPRG complex of both AMPD1 and cardiac AMP deaminase (AMPD3) is suggestive of a physiological mutual dependence between the two subunit components with regard to the stability of the two isoforms of striated muscle AMPD. The observed influence of the HPRG content on the catalytic behavior of the two enzymes further strengthens this hypothesis. Based on the preferential localization of HPRG at the sarcomeric I-band and on the presence of a Zn binding motif in the N-terminal regions of fast TnT and of the AMPD1 catalytic subunit, we advance the hypothesis that the Zn binding properties of HPRG could promote the association of AMPD1 to the thin filament.
多种肌肉特异性锌金属酶 AMP 脱氨酶 (AMPD) 的同工酶已根据其生化和遗传差异被鉴定出来。我们之前的观察表明,金属结合蛋白组氨酸-脯氨酸丰富糖蛋白 (HPRG) 通过作为锌伴侣参与骨骼肌 AMP 脱氨酶 (AMPD1) 的组装和维持。毫摩尔强度磷酸盐在稳定 AMPD1 和心脏 AMP 脱氨酶 (AMPD3) 的 AMPD-HPRG 复合物方面的作用证据表明,两种同工酶的稳定性与两种横纹肌 AMPD 的两个亚基成分之间存在生理相互依赖关系。观察到 HPRG 含量对两种酶的催化行为的影响进一步加强了这一假设。基于 HPRG 在肌节 I 带的优先定位以及在快速 TnT 和 AMPD1 催化亚基的 N 端区域存在 Zn 结合基序,我们提出假设,HPRG 的 Zn 结合特性可以促进 AMPD1 与细肌丝的结合。