Gomez-Escalante Susana, Piper Peter W, Millson Stefan H
Department of Molecular Biology and Biotechnology, University of Sheffield, Firth Court, Western Bank, Sheffield, S10 2TN,, UK.
School of Life Sciences, University of Lincoln, Brayford Pool, Lincoln, LN6 7DL,, UK.
Cell Stress Chaperones. 2017 Jan;22(1):135-141. doi: 10.1007/s12192-016-0750-0. Epub 2016 Nov 25.
Folding of the myosin head often requires the joint actions of Hsp90 and a dedicated UNC45, Cro1, She4 (UCS) domain-containing cochaperone protein. Relatively weak sequence conservation exists between the single UCS protein of simple eukaryotes (She4 in budding yeast) and the two UCS proteins of higher organisms (the general cell and smooth muscle UNC45s; UNC45-GC and UNC45-SM respectively). In vertebrates, UNC45-GC facilitates cytoskeletal function whereas the 55% identical UNC45-SM assists in the assembly of the contractile apparatus of cardiac and skeletal muscles. UNC45-SM, unlike UNC45-GC, shares with yeast She4 an IDSL sequence motif known to be a site of in vivo serine phosphorylation in yeast. Investigating this further, we found that both a non-phosphorylatable (S18A) and a phosphomimetic (S18E) mutant form of She4 could rescue the type 1 myosin localisation and endocytosis defects of the yeast she4Δ mutant at 39 °C. Nevertheless, at higher temperature (45 °C), only She4 (S18A), not She4(S18E), could substantially rescue the cell lysis defect of she4Δ mutant cells. In the yeast two-hybrid system, the non-phosphorylatable S18A and S251A mutant forms of She4 and UNC45-SM still displayed the stress-enhanced in vivo interaction with Hsp90 seen with the wild-type She4 and UNC45-SM. Such high-temperature enforcement to interaction was though lost with the phosphomimetic mutant forms (She4(S18E) and UNC45-SM (S251E)), an indication that phosphorylation might suppress these increases in She4/Hsp90 and UNC45-SM/Hsp90 interaction with stress.
肌球蛋白头部的折叠通常需要热休克蛋白90(Hsp90)和一种专门的含UNC45、Cro1、She4(UCS)结构域的伴侣蛋白共同作用。简单真核生物的单个UCS蛋白(芽殖酵母中的She4)与高等生物的两个UCS蛋白(一般细胞和平滑肌中的UNC45;分别为UNC45-GC和UNC45-SM)之间的序列保守性相对较弱。在脊椎动物中,UNC45-GC促进细胞骨架功能,而序列相似度为55%的UNC45-SM则协助心肌和骨骼肌收缩装置的组装。与UNC45-GC不同,UNC45-SM与酵母She4共享一个IDSL序列基序,已知该基序是酵母体内丝氨酸磷酸化的位点。进一步研究发现,She4的非磷酸化(S18A)和模拟磷酸化(S18E)突变形式都能在39℃时挽救酵母she4Δ突变体的1型肌球蛋白定位和内吞缺陷。然而,在更高温度(45℃)下,只有She4(S18A),而不是She4(S18E),能够显著挽救she4Δ突变体细胞的细胞裂解缺陷。在酵母双杂交系统中,She4和UNC45-SM的非磷酸化S18A和S251A突变形式与野生型She4和UNC45-SM一样,仍表现出应激增强的体内与Hsp90的相互作用。不过,模拟磷酸化突变形式(She4(S18E)和UNC45-SM(S251E))则失去了这种高温增强的相互作用,这表明磷酸化可能会抑制She4/Hsp90和UNC45-SM/Hsp90在应激时相互作用的增加。