Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Pawińskiego 5A str., 02-106 Warsaw, Poland.
Department of Neuropathology, Institute of Psychiatry and Neurology, Sobieskiego 9 str., 02-957 Warsaw, Poland.
Int J Mol Sci. 2020 Oct 19;21(20):7727. doi: 10.3390/ijms21207727.
The gene encoding an alternative sulfate transporter was originally cloned from the genome of the Japanese isolate as a suppressor of sulfate permease-deficient strains. Expression of the gene is under the control of the sulfur metabolite repression system. The encoded protein transports sulfate across the cell membrane. In this study we show that AstA, having orthologs in numerous pathogenic or endophytic fungi, has a second function and, depending on growth conditions, can be translocated into mitochondria. This effect is especially pronounced when an -overexpressing strain grows on solid medium at 37 °C. AstA is also recruited to the mitochondria in the presence of mitochondria-affecting compounds such as menadione or antimycin A, which are also detrimental to the growth of the -overexpressing strain. Disruption of the Hsp70-Porin1 mitochondrial import system either by methylene blue, an Hsp70 inhibitor, or by deletion of the porin1-encoding gene abolishes AstA translocation into the mitochondria. Furthermore, we observed altered ATP levels and sulfite oxidase activity in the -overexpressing strain in a manner dependent on sulfur sources. The presented data indicate that AstA is also involved in the mitochondrial sulfur metabolism in some fungi, and thereby indirectly manages redox potential and energy state.
该基因编码一种替代硫酸盐转运蛋白,最初是从日本分离株的基因组中克隆出来的,作为硫酸盐渗透酶缺陷菌株的抑制剂。该基因的表达受硫代谢物抑制系统的控制。编码的蛋白质将硫酸盐穿过细胞膜运输。在这项研究中,我们表明,在许多病原真菌或内生真菌中具有同源物的 AstA 具有第二种功能,并且根据生长条件,可以被转运到线粒体中。当表达 - 过表达的菌株在 37°C 的固体培养基上生长时,这种效果尤其明显。当存在影响线粒体的化合物(如维生素 K3 或抗霉素 A)时,AstA 也会被招募到线粒体中,这些化合物也不利于 - 过表达菌株的生长。通过亚甲蓝(一种 HSP70 抑制剂)或缺失编码 porin1 的基因破坏 HSP70-porin1 线粒体导入系统会阻止 AstA 向线粒体的转运。此外,我们观察到在依赖于硫源的方式下,- 过表达菌株中的 ATP 水平和亚硫酸盐氧化酶活性发生改变。所呈现的数据表明,AstA 也参与了一些真菌中的线粒体硫代谢,从而间接管理氧化还原电位和能量状态。