首页> 外文期刊>Molecular Plant >Contributions of individual amino acid residues to the endogenous CLV3 function in shoot apical meristem maintenance in Arabidopsis. (Special Issue: Plant metabolism and modern agriculture.)
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Contributions of individual amino acid residues to the endogenous CLV3 function in shoot apical meristem maintenance in Arabidopsis. (Special Issue: Plant metabolism and modern agriculture.)

机译:拟南芥茎尖分生组织维持过程中单个氨基酸残基对内源性CLV3功能的贡献。 (特刊:植物新陈代谢与现代农业。)

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摘要

As a peptide hormone, CLV3 restricts the stem cell number in shoot apical meristem (SAM) by interacting with CLV1/CLV2/CRN/RPK2 receptor complexes. To elucidate how the function of the CLV3 peptide in SAM maintenance is established at the amino acid (AA) level, alanine substitutions were performed by introducing point mutations to individual residues in the peptide-coding region of CLV3 and its flanking sequences. Constructs carrying such substitutions, expressed under the control of CLV3 regulatory elements, were transformed to the clv3-2 null mutant to evaluate their efficiencies in complementing its defects in SAMs in vivo. These studies showed that aspartate-8, histidine-11, glycine-6, proline-4, arginine-1, and proline-9, arranged in an order of importance, were critical, while threonine-2, valine-3, serine-5, and the previously assigned hydroxylation and arabinosylation residue proline-7 were trivial for the endogenous CLV3 function in SAM maintenance. In contrast, substitutions of flanking residues did not impose much damage on CLV3. Complementation of different alanine-substituted constructs was confirmed by measurements of the sizes of SAMs and the WUS expression levels in transgenic plants. These studies established a complete contribution map of individual residues in the peptide-coding region of CLV3 for its function in SAM, which may help to understand peptide hormones in general.
机译:作为一种肽激素,CLV3通过与CLV1 / CLV2 / CRN / RPK2受体复合物相互作用来限制茎尖分生组织(SAM)中的干细胞数量。为了阐明CLV3肽在SAM(氨基酸)水平上如何建立SAM维持功能,通过将点突变引入CLV3肽编码区及其侧翼序列中的各个残基来进行丙氨酸取代。在 CLV3 调控元件的控制下表达的带有这种取代的构建体被转化为 clv3-2 空突变体,以评估其在SAM中弥补其缺陷的效率体内。这些研究表明,按重要性排列的天冬氨酸8,组氨酸11,甘氨酸6,脯氨酸4,精氨酸1和脯氨酸9是至关重要的,而苏氨酸2,缬氨酸3,丝氨酸-在图5中,对于SAM维持中的内源CLV3功能而言,先前指定的羟基化和阿拉伯糖基化残基脯氨酸7是微不足道的。相反,侧翼残基的取代对CLV3没有太大的损害。通过测量转基因植物中SAM的大小和 WUS 表达水平,证实了不同丙氨酸取代构建体的互补性。这些研究建立了CLV3肽编码区中各个残基在SAM中的功能的完整贡献图,这可能有助于一般地了解肽激素。

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