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Focus Issue on Light Signaling: Photoactivated Adenylyl Cyclase Controls Phototaxis in the Flagellate Euglena gracilis

机译:关于光信号的焦点问题:光活化的腺苷酸环化酶控制鞭毛Euglena gracilis中的趋光性

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摘要

Euglena gracilis, a unicellular freshwater protist exhibits different photomovement responses, such as phototaxis (oriented movement toward or away from the light source) and photophobic (abrupt turn in response to a rapid increase [step-up] or decrease [step-down] in the light fluence rate) responses. Photoactivated adenylyl cyclase (PAC) has been isolated from whole-cell preparations and identified by RNA interference (RNAi) to be the photoreceptor for step-up photophobic responses but not for step-down photophobic responses (M. Iseki, S. Matsunaga, A. Murakami, K. Ohno, K. Shiga, C. Yoshida, M. Sugai, T. Takahashi, T. Hori, M. Watanabe [2002] Nature 415: 1047-1051). The present study shows that knockdown of PAC by RNAi also effectively suppresses both positive and negative phototaxis, indicating for the first time that PAC or a PAC homolog is also the photoreceptor for photoorientation of wild-type E. gracilis. Recovery from RNAi occurred earlier for step-up photophobic responses than for positive and negative phototaxis. In addition, we investigated several phototaxis mutant strains of E. gracilis with different cytological features regarding the stigma and paraxonemal body (PAB; believed to be the location for the phototaxis photoreceptor) as well as Astasia longa, a close relative of E. gracilis. All of the E. gracilis mutant strains had PAC mRNAs, whereas in A. longa, a different but similar mRNA was found and designated AlPAC. Consistently, all of these strains showed no phototaxis but performed step-up photophobic responses, which were suppressed by RNAi of the PAC mRNA. The fact that some of these strains possess a cytologically altered or no PAB demonstrates that at least in these strains, the PAC photoreceptor responsible for the step-up photophobic responses is not located in the PAB.
机译:Euglena gracilis,单细胞淡水生物,表现出不同的光运动响应,例如趋光性(朝向或远离光源的定向运动)和憎光性(响应于水中的快速增加(逐步升高或降低)而突然转向)。光通量率)响应。已从全细胞制备物中分离出光活化的腺苷酸环化酶(PAC),并通过RNA干扰(RNAi)鉴定其为逐步增强的光反应的光感受器,而不是逐步降低的光反应的光感受器(M. Iseki,S. Matsunaga,A村上K.大野,K。滋贺,吉田美,Sugai,T。高桥,T.Hori,M。渡边[2002] Nature 415:1047-1051)。本研究表明,RNAi敲除PAC还可有效抑制正趋性和负趋光性,这首次表明PAC或PAC同源物也是用于野生型细粒肠杆菌光定向的光感受器。从逐步增强的光反应,从RNAi恢复发生早于正和负趋光性。此外,我们调查了几种具有不同细胞学特征的耻骨肠球菌的趋光性突变株,这些菌株在柱头和副鞭状体(PAB;据信是趋光性感光体的位置)以及长尾毛虫(Astasia longa),其为近缘性肠球菌。所有的细粒肠球菌突变株均具有PAC mRNA,而在长曲霉中,发现了不同但相似的mRNA,并将其命名为AlPAC。一致地,所有这些菌株均未表现出趋光性,但表现出逐步的憎光反应,这被PAC mRNA的RNAi抑制。这些菌株中的一些菌株具有细胞学改变或没有PAB的事实表明,至少在这些菌株中,负责逐步增强的憎光反应的PAC感光体不在PAB中。

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