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235 results on '"Sutherland JD"'

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101. Evolution of SUMO Function and Chain Formation in Insects.

102. The Origin of Life--Out of the Blue.

103. Analysis of SUMOylated Proteins in Cells and In Vivo Using the bioSUMO Strategy.

104. Using Biotinylated SUMO-Traps to Analyze SUMOylated Proteins.

105. Ikaros mediates the DNA methylation-independent silencing of MCJ/DNAJC15 gene expression in macrophages.

106. PTEN mediates Notch-dependent stalk cell arrest in angiogenesis.

107. Ecdysone promotes growth of imaginal discs through the regulation of Thor in D. melanogaster.

108. The orthopedic diseases of ancient Egypt.

109. Common origins of RNA, protein and lipid precursors in a cyanosulfidic protometabolism.

110. Excited-state hydrogen atom abstraction initiates the photochemistry of β-2'-deoxycytidine.

111. Exosomes as Hedgehog carriers in cytoneme-mediated transport and secretion.

112. The RING ubiquitin E3 RNF114 interacts with A20 and modulates NF-κB activity and T-cell activation.

113. Ubiquitin profiling in liver using a transgenic mouse with biotinylated ubiquitin.

114. Funerary artifacts, social status, and atherosclerosis in ancient peruvian mummy bundles.

115. Self-assembly of phosphate amphiphiles in mixtures of prebiotically plausible surfactants.

116. Computed tomographic evidence of atherosclerosis in the mummified remains of humans from around the world.

117. Atherosclerosis in ancient and modern Egyptians: the Horus study.

118. Genomic correlates of atherosclerosis in ancient humans.

119. Atherosclerosis: a longue durée approach.

120. Why did ancient people have atherosclerosis?: from autopsies to computed tomography to potential causes.

121. Is atherosclerosis fundamental to human aging? Lessons from ancient mummies.

122. Conversion of biosynthetic precursors of RNA to those of DNA by photoredox chemistry.

123. Solid-phase synthesis and hybrization behavior of partially 2'/3'-O-acetylated RNA oligonucleotides.

124. An automated synthesis-purification-sample-management platform for the accelerated generation of pharmaceutical candidates.

125. Towards an evolutionary theory of the origin of life based on kinetics and thermodynamics.

127. Atherosclerotic cardiovascular disease in Egyptian women: 1570 BCE-2011 CE.

129. Prebiotically plausible oligoribonucleotide ligation facilitated by chemoselective acetylation.

130. Atherosclerosis across 4000 years of human history: the Horus study of four ancient populations.

131. Detection of potential TNA and RNA nucleoside precursors in a prebiotic mixture by pure shift diffusion-ordered NMR spectroscopy.

132. Scavenger receptors mediate the role of SUMO and Ftz-f1 in Drosophila steroidogenesis.

133. Prebiotic synthesis of simple sugars by photoredox systems chemistry.

134. Adenovirus and miRNAs.

135. Prebiotic chemistry: a new modus operandi.

136. Drosophila Sal and Salr are transcriptional repressors.

137. Atherosclerosis in ancient Egyptian mummies: the Horus study.

138. Generation of stable Drosophila cell lines using multicistronic vectors.

139. Efficient allele-specific targeting of LRRK2 R1441 mutations mediated by RNAi.

140. Chemoselective multicomponent one-pot assembly of purine precursors in water.

141. Sumoylation modulates the activity of Spalt-like proteins during wing development in Drosophila.

142. A stereoelectronic effect in prebiotic nucleotide synthesis.

144. Ribonucleotides.

145. Structures of an isopenicillin N converting Ntn-hydrolase reveal different catalytic roles for the active site residues of precursor and mature enzyme.

146. Synthesis of activated pyrimidine ribonucleotides in prebiotically plausible conditions.

147. Potentially prebiotic synthesis of pyrimidine beta-D-ribonucleotides by photoanomerization/hydrolysis of alpha-D-cytidine-2'-phosphate.

148. The search for a potentially prebiotic synthesis of nucleotides via arabinose-3-phosphate and its cyanamide derivative.

149. On the prebiotic synthesis of ribonucleotides: photoanomerisation of cytosine nucleosides and nucleotides revisited.

150. RNA: prebiotic product, or biotic invention?

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