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首页> 外文期刊>Biochemistry >Gatekeeper-Activation Loop Cross-Talk Determines Distinct Autoactivation States of Symbiosis Receptor Kinase
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Gatekeeper-Activation Loop Cross-Talk Determines Distinct Autoactivation States of Symbiosis Receptor Kinase

机译:网守 - 激活循环串扰决定了共生受体激酶的不同自身激活态

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摘要

Plant receptor-like kinases (RLKs) have a Tyr in the "gatekeeper" position adjacent to the hinge region. The gatekeeper is phosphorylated in several RLKs, including symbiosis receptor kinase (SYMRK), but the significance of this remains unknown. Gatekeeper substitution did not inactivate Arachis hypogaea SYMRK but affected autophosphorylation at selected sites. Herein, we show that nonphosphorylatable gatekeepers (Y670F and Y670A) restrict SYMRK to be a Ser/Thr kinase with a basal level of phosphorylation (similar to 5 P/polypeptide, termed state I) whereas phosphorylatable gatekeepers (Y670 and Y670T) allowed SYMRK to be dual specific (Ser/Thr/Tyr) with a maximal level of phosphorylation (similar to 10 P/polypeptide, termed state II). State II SYMRKs were phosphorylated on gatekeeper residues, and the phosphocode in their activation segment was distinct from state I. The k(cat)/K-m for substrate phosphorylation was similar to 10-fold higher for state II, though for autophosphorylation, it was comparable with those of state I SYMRKs. To identify other determinants of state I features, we mutagenized all nine sites where phosphorylation was affected by nonphosphorylatable gatekeepers (Y670F and Y670A). Only two such mutants, S754A and S757A, located on the activation loop failed to phosphorylate gatekeeper Tyr and restricted SYMRK in state I. Double mutants like Y670F/S754A retained the features of state I, but Y670F/S757A was significantly inactivated, indicating a nonphosphorylatable gatekeeper can bypass phosphorylation of 5754 but not 5757 in the activation segment. We propose a working model for the hierarchical phosphorylation of SYMRK on gatekeeper and activation segments for its pS757-mediated activation as a Ser/Thr kinase in selfie mode (autophosphorylation) to a pS754/pY670-mediated activation as a Ser/Thr/Tyr kinase that functions in dual mode (both autophosphorylation and substrate phosphorylation).
机译:植物受体样激酶(rlks)在与铰链区相邻的“门守”位置中具有Tyr。网守在几个rlks中磷酸化,包括共生受体激酶(Symrk),但这仍然未知。 Natekeeper替代并未将Arachis Hypogaea Symrk灭活但在所选地点影响自身磷酸化。在此,我们表明,非磷属可呈现的尿素(Y670F和Y670A)将SymRK限制为具有基础磷酸化的Ser / Thr激酶(类似于5个P /多肽,称为状态I),而可磷的门守者(Y670和Y670T)允许SYMRK具有最大磷酸化水平的双特异性(SER / THR / TYR)(类似于10 p /多肽,称为状态II)。状态II次符号在颈背残留物上磷酸化,其活化区段中的磷代蚀与状态I不同。对于族磷酸化的K(猫)/ km类似于州II的10倍,但对于自磷酸化,它是可比的与我叙述的国家。为了识别状态的其他决定因素,我们致死所有九个遗址,其中磷酸化受非磷属可磷的门守(Y670F和Y670A)的影响。位于激活回路上的两个这样的突变体,S754a和S757a未能磷酸化网守Tyr和受限制的Symrk在状态I中。如Y670F / S754a等双突变体保留了状态I的特征,但是y670f / s757a被显着灭活,表明非磷属门守可以在激活段中绕过5754但不是5757的磷酸化。我们提出了一种在网守和激活段对Symrk的分层磷酸化的工作模型,其PS757介导的活化作为Selfie模式(自磷酸化)中的Ser / Thr激活为SER754 / PY670介导的活化作为SER / THR / TYR激酶在双模式(自磷酸化和基材磷酸化)中的功能。

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