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Characterization of the Subdomains in the N-Terminal Region of Histidine Kinase Hik33 in the Cyanobacterium Synechocystis sp. PCC 6803

机译:蓝藻蓝藻属组氨酸激酶Hik33 N末端区域亚结构域的表征。 PCC 6803

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Histidine kinase Hik33 responds to a variety of stress conditions and regulates the expression of stress-inducible genes in the cyanobacterium Synechocystis sp. PCC 6803. However, the mechanisms of response and regulation remain unknown. Generally, a histidine kinase perceives a specific signal via its N-terminal region. Hik33 has two transmembrane helices, a periplasmic loop, and HAMP and PAS domains in its N-terminal region, all of which might be involved in signal perception. To investigate the functions of these subdomains in vivo, we expressed a chimeric histidine kinase (Hik33n–SphSc) by fusing the N-terminal region of Hik33 with the C-terminal region of a sensory histidine kinase that is activated under phosphate-deficient conditions, SphS. Hik33n–SphSc responded to several stimuli that are perceived by intact Hik33 and regulated expression of the phoA gene for alkaline phosphatase, which is normally regulated under phosphate-deficient conditions by SphS. We introduced genes for modified versions of Hik33n–SphSc into Synechocystis and monitored expression of phoA under standard and stress conditions. Hik33n–SphSc lacking either the transmembrane helices or both the HAMP and PAS domains had no kinase activity, whereas Hik33n–SphSc lacking the HAMP or the PAS domain enhanced expression of phoA. Moreover, variants of Hik33n–SphSc, in which the membrane-localizing region was replaced by those of other histidine kinases, also responded to stress conditions. Thus, transmembrane helices, regardless of sequence, appear to be essential for the function of Hik33, while the HAMP and PAS domains play important roles in regulating kinase activity in vivo.
机译:组氨酸激酶Hik33响应多种应激条件,并调节蓝藻集胞藻属中的应激诱导基因的表达。 PCC6803。但是,响应和调节的机制仍然未知。通常,组氨酸激酶通过其N末端区域感知特定信号。 Hik33在其N端区域有两个跨膜螺旋,一个周质环以及HAMP和PAS域,所有这些都可能与信号感知有关。为了研究这些亚域在体内的功能,我们通过将Hik33的N端区域与在磷酸盐缺乏条件下激活的感觉组氨酸激酶的C端区域融合来表达嵌合的组氨酸激酶(Hik33n–SphSc), SphS。 Hik33n–SphSc对完整的Hik33感知到的几种刺激作出反应,并调节碱性磷酸酶phoA基因的表达,而碱性磷酸酶通常在磷酸不足的条件下通过SphS对其进行调节。我们将改良型Hik33n–SphSc的基因引入到了集胞藻中,并在标准和胁迫条件下监测phoA的表达。既没有跨膜螺旋结构又没有HAMP和PAS结构域的Hik33n–SphSc没有激酶活性,而缺乏HAMP或PAS结构域的Hik33n–SphSc增强了phoA的表达。此外,Hik33n–SphSc的变体(其膜定位区域被其他组氨酸激酶的膜定位区域替代)也对胁迫条件产生响应。因此,跨膜螺旋,无论序列如何,似乎对于Hik33的功能都是必不可少的,而HAMP和PAS结构域在体内调节激酶活性中起着重要的作用。

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