Biswal Malay Ranjan, Padmanabhan Sreedevi, Manjithaya Ravi, Prakash Meher K
Computational Biology, Theoretical Sciences Unit, Jawaharlal Nehru Centre for Advanced Scientific Research (JNCASR), Bangalore, India.
Autophagy Laboratory, Molecular Biology and Genetics Unit, Jawaharlal Nehru Centre for Advanced Scientific Research (JNCASR), Bangalore, India.
Front Cell Dev Biol. 2022 May 13;10:863825. doi: 10.3389/fcell.2022.863825. eCollection 2022.
Several proteins are secreted outside the cell, and in many cases, they may be identified by a characteristic signal peptide. However, more and more studies point to the evidence for an "unconventional" secretion, where proteins without a hitherto unknown signal are secreted, possibly in conditions of starvation. In this work, we analyse a set of 202 RNA binding mammalian proteins, whose unconventional secretion has recently been established. Analysis of these proteins secreted by LC3 mediation, the largest unconventionally secreted dataset to our knowledge, identifies the role of KKX motif as well as triacidic amino acid motif in unconventional secretion, the latter being an extension of the recent implicated diacidic amino acid motif. Further data analysis evolves a hypothesis on the sequence or structural proximity of the triacidic or KKX motifs to the LC3 interacting region, and a phosphorylatable amino acid such as serine as a statistically significant feature among these unconventionally secreted proteins. This hypothesis, although needs to be validated in experiments that challenge the specific details of each of these aspects, appears to be one of the early steps in defining what may be a plausible signal for unconventional protein secretion.
几种蛋白质分泌到细胞外,在许多情况下,它们可能通过特征性信号肽来识别。然而,越来越多的研究表明存在“非传统”分泌的证据,即没有迄今未知信号的蛋白质可能在饥饿条件下被分泌。在这项工作中,我们分析了一组202种RNA结合哺乳动物蛋白,其非传统分泌最近已得到证实。对这些通过LC3介导分泌的蛋白质进行分析,据我们所知,这是最大的非传统分泌数据集,确定了KKX基序以及三酸性氨基酸基序在非传统分泌中的作用,后者是最近涉及的二酸性氨基酸基序的延伸。进一步的数据分析提出了一个关于三酸性或KKX基序与LC3相互作用区域的序列或结构接近性的假设,以及一个可磷酸化的氨基酸(如丝氨酸)作为这些非传统分泌蛋白质中具有统计学意义的特征。这个假设虽然需要在挑战这些方面每个具体细节的实验中得到验证,但似乎是定义非传统蛋白质分泌可能的合理信号的早期步骤之一。