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Structural insights into BCL2 pro-survival protein interactions with the key autophagy regulator BECN1 following phosphorylation by STK4/MST1

机译:STK4 / MST1磷酸化后与关键自噬调节剂BECN1相互作用的BCL2促生存蛋白相互作用的结构见解

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摘要

BECN1/Beclin 1 is a critical protein in the initiation of autophagosome formation. Recent studies have shown that phosphorylation of BECN1 by STK4/MST1 at threonine 108 (T108) within its BH3 domain blocks macroautophagy/autophagy by increasing BECN1 affinity for its negative regulators, the anti-apoptotic proteins BCL2/Bcl-2 and BCL2L1/Bcl-x . It was proposed that this increased binding is due to formation of an electrostatic interaction with a conserved histidine residue on the anti-apoptotic molecules. Here, we performed biophysical studies which demonstrated that a peptide corresponding to the BECN1 BH3 domain in which T108 is phosphorylated (p-T108) does show increased affinity for anti-apoptotic proteins that is significant, though only minor (<2-fold). We also determined X-ray crystal structures of BCL2 and BCL2L1 with T108-modified BECN1 BH3 peptides, but only showed evidence of an interaction between the BH3 peptide and the conserved histidine residue when the histidine flexibility was restrained due to crystal contacts. These data, together with molecular dynamics studies, indicate that the histidine is highly flexible, even when complexed with BECN1 BH3. Binding studies also showed that detergent can increase the affinity of the interaction. Although this increase was similar for both the phosphorylated and non-phosphorylated peptides, it suggests factors such as membranes could impact on the interaction between BECN1 and BCL2 proteins, and therefore, on the regulation of autophagy. Hence, we propose that phosphorylation of BECN1 by STK4/MST1 can increase the affinity of the interaction between BECN1 and anti-apoptotic proteins and this interaction can be stabilized by local environmental factors.
机译:BECN1 / Beclin 1是自噬体形成过程中的关键蛋白。最近的研究表明,在其BH3域内,苏氨酸108(T108)上的STK4 / MST1将BECN1磷酸化,可通过增加BECN1对它的负调节剂,抗凋亡蛋白BCL2 / Bcl-2和BCL2L1 / Bcl-的亲和力来阻止宏观自噬/自噬。 X 。提出这种增加的结合是由于与抗凋亡分子上保守的组氨酸残基形成静电相互作用。在这里,我们进行了生物物理研究,结果表明与BECN1 BH3结构域相对应的肽(其中T108被磷酸化了)(p-T108)确实显示了对抗凋亡蛋白的亲和力增加,尽管只有很小的(<2倍)。我们还确定了具有T108修饰的BECN1 BH3肽的BCL2和BCL2L1的X射线晶体结构,但是仅当组氨酸柔韧性由于晶体接触而受到限制时,才显示BH3肽与保守的组氨酸残基之间相互作用的证据。这些数据以及分子动力学研究表明,即使与BECN1 BH3复合,组氨酸也具有很高的柔韧性。结合研究还表明去污剂可以增加相互作用的亲和力。尽管磷酸化和非磷酸化肽的增加相似,但这表明膜等因素可能影响BECN1和BCL2蛋白之间的相互作用,因此影响自噬的调节。因此,我们建议STK4 / MST1磷酸化BECN1可以增加BECN1与抗凋亡蛋白之间相互作用的亲和力,并且可以通过局部环境因素来稳定这种相互作用。

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